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skills/partnerprof-guide/references/task_manifest.json
249 KB · Sep 30, 2026 · 23:11 UTC
{
"bootstrap_requirement": {
"mandatory_first_read": "/api/v3/knowledge-map",
"rule": "An AI/plugin must read the current knowledge map before deciding suitability, rejecting a request, or constructing this manifest."
},
"catalog": {
"cml_ax_profiles": [
{
"key": "targeted_generic",
"label_cs": "Cílová interpretace",
"label_en": "Targeted interpretation",
"mode": "target"
},
{
"key": "combinatorial_objective",
"label_cs": "Kombinatorický cíl",
"label_en": "Combinatorial objective",
"mode": "objective"
},
{
"key": "quantum_energy",
"label_cs": "Energie / vlastní hodnota",
"label_en": "Energy / eigenvalue",
"mode": "energy"
},
{
"key": "quantum_phase",
"label_cs": "Fáze / QPE",
"label_en": "Phase / QPE",
"mode": "phase"
},
{
"key": "quantum_time_evolution",
"label_cs": "Časová evoluce",
"label_en": "Time evolution",
"mode": "trajectory"
},
{
"key": "quantum_correlation",
"label_cs": "Korelace / Bell-CHSH",
"label_en": "Correlation / Bell-CHSH",
"mode": "correlation"
},
{
"key": "quantum_tunneling",
"label_cs": "Tunelování / bariéra",
"label_en": "Tunnelling / barrier",
"mode": "projection"
},
{
"key": "combinatorial_packed_objective",
"label_cs": "Velký kombinatorický cíl",
"label_en": "Packed large combinatorial objective",
"mode": "objective"
}
],
"cml_ax_selection": "automatic_from_problem_family; explicit override is accepted only when the family allows that profile",
"demo": {
"enabled": true,
"limits": {
"cml_q_gain_max": 0.25,
"max_auto_clones": 14,
"max_concurrent_runs": 24,
"max_constraints": 48,
"max_dimension": 65539,
"max_mesh_points": 100000,
"max_request_bytes": 1048576,
"max_runtime_s": 600,
"max_steps": 100000,
"max_variables": 24
}
},
"dimension_policy": {
"default": 64,
"max": 65536,
"min": 4,
"mode": "exact_bounded_slice"
},
"encoding": {
"ai_interpretation": false,
"candidate_local_realities": "explicit_non_ranked_blocks_in_remaining_vector_capacity",
"constraint_block_size": 8,
"constraint_layout": "immediately_after_variable_blocks",
"failure_contract": "FAIL(G)=(C_fail,V_fail,H_break); fields are never fabricated when the core does not expose them",
"goal_block_size": 8,
"goal_semantic": "goal_admissible_iff_coherent_continuation_exists_from_current_reality; rules remain fixed",
"header_slots": 16,
"invariant_block_size": 8,
"layer_block_size": 16,
"max_constraints": 128,
"max_goals": 64,
"max_invariants": 256,
"max_layers": 32,
"max_relations": 256,
"max_variables": 96,
"optimization_objectives": [
"cost",
"custom",
"distance",
"energy",
"none",
"risk",
"time"
],
"question_and_optimization_excluded_from_evo_vector": true,
"question_modes": [
"ADMISSIBILITY",
"CONFLICT_DIAGNOSTIC",
"FULL_CYCLE",
"NEAREST_ADMISSIBLE_GOAL",
"REALIZATION"
],
"relation_block_size": 8,
"text_projection": false,
"unused_slots": "explicit_schema_zero",
"variable_block_size": 12,
"worker_gate_semantic": "worker_request_is_deferred_until_E_EvO(G|H_t)=1"
},
"geometries": [
{
"code": 1,
"help_cs": "Běžný pravoúhlý prostor. Hodí se pro délky, polohy, směry a většinu laboratorních úloh.",
"icon": "⌗",
"key": "cartesian",
"label_cs": "Kartézský prostor x, y, z"
},
{
"code": 2,
"help_cs": "Pole se popisuje hlavně vzdáleností od středu a směrem.",
"icon": "◎",
"key": "radial",
"label_cs": "Radiální / kulový prostor"
},
{
"code": 3,
"help_cs": "Vhodné pro cívky, válce a systémy se společnou osou.",
"icon": "↕",
"key": "axial",
"label_cs": "Osově souměrné pole"
},
{
"code": 4,
"help_cs": "Hlavní proměnnou je čas a změny stavu v čase.",
"icon": "◷",
"key": "temporal",
"label_cs": "Časový průběh"
},
{
"code": 5,
"help_cs": "Pro úlohy, kde není důležitá konkrétní geometrie prostoru.",
"icon": "◇",
"key": "abstract",
"label_cs": "Obecné stavové pole"
},
{
"code": 6,
"help_cs": "Konečná výpočetní výseč bez předepsaných sousedností a bez globální hranice prostoru.",
"help_en": "A finite computational slice with no prescribed neighbourhood topology and no claimed global boundary.",
"icon": "∞",
"key": "unbounded_slice",
"label_cs": "Výseč neohraničeného prostoru bez topologie",
"label_en": "Finite slice of unbounded topology-free space"
}
],
"presets": [
{
"compute_slice": {
"extent": 1e-13,
"initial_perturbation": 0.2,
"max_steps": 10000,
"pixel_grain": 1e-15,
"resolution": 1e-15,
"step_size": 1e-15,
"timeout_s": 60
},
"constraints": [],
"description_cs": "Přednastavené číselné pole pro ověření přípustné realizace průchodu přes energetickou bariéru. Nejde o slovní úlohu ani o AI odhad.",
"description_en": "Preset numeric field demonstrating a tunnelling configuration across an energy barrier. It is a structured numeric input, not a word problem or an AI estimate.",
"dimension": 128,
"explanation_cs": {
"input": "Aktuální vzdálenost jader je 8 fm, efektivní šířka bariéry 5 fm, výška bariéry 400 keV a teplota 100 MK. Cílem je zjistit, zda pole připouští pokračování k oblasti rₙ ≤ 5 fm.",
"result_rule": "CML rozhoduje pouze o přípustnosti realizace v zadaném poli. Kladný stav není automaticky důkazem dosažení cíle. CML_Ax může po realizaci zobrazit samostatnou WKB projekci tunelování; tato projekce výsledek CML_A nemění.",
"title": "Co demonstrační úloha ověřuje"
},
"explanation_en": {
"input": "Current nuclear distance 8 fm, effective barrier width 5 fm, barrier height 400 keV, and temperature 100 MK. The declared target region is rₙ ≤ 5 fm.",
"result_rule": "The primary result is the public CML state for the exact approved field. Goal attainment is reported separately. A WKB projection is shown only when the returned audit contains its numeric parameters.",
"title": "What the demonstration verifies"
},
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": "<=",
"unit": "fm",
"value": "5",
"variable": "nuclear_distance"
}
],
"invariants": [],
"key": "quantum_tunneling_demo",
"label_cs": "Kvantové tunelování — demonstrační zadání",
"label_en": "Quantum tunnelling — default demonstration input",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "quantum_tunneling",
"question": {
"mode": "ADMISSIBILITY"
},
"relations": [
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "nuclear_distance",
"target": "barrier_energy",
"weight": 1.0
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "barrier_width",
"target": "nuclear_distance",
"weight": 1.0
}
],
"variables": [
{
"confirmed": true,
"key": "nuclear_distance",
"max": "20",
"min": "1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "fm",
"value": "8"
},
{
"confirmed": true,
"key": "barrier_width",
"max": "10",
"min": "1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "fm",
"value": "5"
},
{
"confirmed": true,
"key": "barrier_energy",
"max": "800",
"min": "100",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "keV",
"value": "400"
},
{
"confirmed": true,
"key": "temperature",
"max": "200000000",
"min": "10000000",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "K",
"value": "100000000"
}
]
},
{
"cml_ax": {
"profile": "combinatorial_objective"
},
"compute_slice": {
"extent": 1,
"initial_perturbation": 0.2,
"max_steps": 128,
"pixel_grain": 0.01,
"resolution": 0.01,
"step_size": 0.01,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Pět uzlů a šest hran podle IBM QAOA tutorialu; cílem je jediný řez C≥5.",
"description_en": "Five nodes and six edges from the IBM QAOA tutorial; target is one cut with C≥5.",
"dimension": 512,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": ">=",
"unit": "edge",
"value": "5",
"variable": "cut5_value"
}
],
"invariants": [],
"key": "ibm_maxcut_5_demo",
"label_cs": "IBM Max-Cut 5 — přímé srovnání",
"label_en": "IBM Max-Cut 5 — direct comparison",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "ibm_maxcut_5",
"question": {
"mode": "REALIZATION"
},
"relations": [
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x0",
"target": "cut5_x1",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x0",
"target": "cut5_x2",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x0",
"target": "cut5_x4",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x1",
"target": "cut5_x2",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x2",
"target": "cut5_x3",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x3",
"target": "cut5_x4",
"weight": 1
}
],
"variables": [
{
"confirmed": true,
"key": "cut5_x0",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x1",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x2",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x3",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x4",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_value",
"max": "6",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "edge",
"value": "0"
}
]
},
{
"cml_ax": {
"profile": "quantum_energy"
},
"compute_slice": {
"extent": 6.283185307179586,
"initial_perturbation": 0.2,
"max_steps": 128,
"pixel_grain": 0.04908738521234052,
"resolution": 0.04908738521234052,
"step_size": 0.04908738521234052,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Redukovaný jednoqubitový Hamiltonián H₂ při 0.735 Å.",
"description_en": "Reduced one-qubit H₂ Hamiltonian at 0.735 Å.",
"dimension": 512,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": "<=",
"unit": "Ha",
"value": "-1.143476212658907",
"variable": "h2_energy"
}
],
"invariants": [],
"key": "ibm_h2_vqe_demo",
"label_cs": "IBM H₂ VQE — energie",
"label_en": "IBM H₂ VQE — energy",
"optimization": {
"custom": "",
"objective": "energy"
},
"problem_family": "quantum_vqe_h2",
"question": {
"mode": "REALIZATION"
},
"relations": [
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "h2_theta",
"target": "h2_energy",
"weight": 1
}
],
"variables": [
{
"confirmed": true,
"key": "h2_cI",
"max": "0",
"min": "-2",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "-1.04886087"
},
{
"confirmed": true,
"key": "h2_cZ",
"max": "0",
"min": "-2",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "-0.7967368"
},
{
"confirmed": true,
"key": "h2_cX",
"max": "1",
"min": "-1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "0.18121804"
},
{
"confirmed": true,
"key": "h2_nuclear_repulsion",
"max": "2",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "0.71997"
},
{
"confirmed": true,
"key": "h2_theta",
"max": "3.141592653589793",
"min": "-3.141592653589793",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "rad",
"value": "0"
},
{
"confirmed": true,
"key": "h2_energy",
"max": "0",
"min": "-2",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "Ha",
"value": "-1.0"
}
]
},
{
"cml_ax": {
"profile": "quantum_phase"
},
"compute_slice": {
"extent": 1,
"initial_perturbation": 0.2,
"max_steps": 64,
"pixel_grain": 0.015625,
"resolution": 0.015625,
"step_size": 0.015625,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Binární zpřesnění fáze 1/6 na 35 bitů.",
"description_en": "Binary refinement of phase 1/6 to 35 bits.",
"dimension": 512,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": ">=",
"unit": "bit",
"value": "35",
"variable": "qpe_bits_resolved"
},
{
"confirmed": true,
"op": "<=",
"unit": "fraction",
"value": "2.9103830456733704e-11",
"variable": "qpe_error"
}
],
"invariants": [],
"key": "ibm_qpe_35_demo",
"label_cs": "IBM QPE — φ=1/6, 35 bitů",
"label_en": "IBM QPE — φ=1/6, 35 bits",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "quantum_qpe_phase",
"question": {
"mode": "FULL_CYCLE"
},
"relations": [
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "qpe_prefix",
"target": "qpe_phase_estimate",
"weight": 1
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "qpe_phase_estimate",
"target": "qpe_error",
"weight": 1
}
],
"variables": [
{
"confirmed": true,
"key": "qpe_phase",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "fraction",
"value": "0.16666666666666666"
},
{
"confirmed": true,
"key": "qpe_bits",
"max": "52",
"min": "1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "bit",
"value": "35"
},
{
"confirmed": true,
"key": "qpe_bits_resolved",
"max": "52",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "qpe_prefix",
"max": "34359738367",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "code",
"value": "0"
},
{
"confirmed": true,
"key": "qpe_phase_estimate",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "fraction",
"value": "0"
},
{
"confirmed": true,
"key": "qpe_error",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "fraction",
"value": "0.16666666666666666"
}
]
},
{
"cml_ax": {
"profile": "quantum_correlation"
},
"compute_slice": {
"extent": 2,
"initial_perturbation": 0.2,
"max_steps": 64,
"pixel_grain": 0.01,
"resolution": 0.01,
"step_size": 0.01,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Korelační úloha s cílem |S|≥2.8.",
"description_en": "Correlation task targeting |S|≥2.8.",
"dimension": 256,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": ">=",
"unit": "value",
"value": "2.8",
"variable": "chsh_s"
}
],
"invariants": [],
"key": "ibm_chsh_demo",
"label_cs": "Bell/CHSH — kvantová mez",
"label_en": "Bell/CHSH — quantum bound",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "quantum_chsh",
"question": {
"mode": "REALIZATION"
},
"relations": [
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "chsh_e00",
"target": "chsh_s",
"weight": 1.0
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "chsh_e01",
"target": "chsh_s",
"weight": 1.0
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "chsh_e10",
"target": "chsh_s",
"weight": 1.0
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "chsh_e11",
"target": "chsh_s",
"weight": 1.0
}
],
"variables": [
{
"confirmed": true,
"key": "chsh_e00",
"max": "1",
"min": "-1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "corr",
"value": "0"
},
{
"confirmed": true,
"key": "chsh_e01",
"max": "1",
"min": "-1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "corr",
"value": "0"
},
{
"confirmed": true,
"key": "chsh_e10",
"max": "1",
"min": "-1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "corr",
"value": "0"
},
{
"confirmed": true,
"key": "chsh_e11",
"max": "1",
"min": "-1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "corr",
"value": "0"
},
{
"confirmed": true,
"key": "chsh_s",
"max": "2.8284271247461903",
"min": "-2.8284271247461903",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "value",
"value": "0"
}
]
},
{
"cml_ax": {
"profile": "quantum_time_evolution"
},
"compute_slice": {
"extent": 1,
"initial_perturbation": 0.2,
"max_steps": 32,
"pixel_grain": 0.1,
"resolution": 0.1,
"step_size": 0.1,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Pokračující trajektorie ⟨A⟩=cos(ωt) do koncového času.",
"description_en": "Continuing trajectory ⟨A⟩=cos(ωt) to final time.",
"dimension": 256,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": ">=",
"unit": "s",
"value": "1",
"variable": "qt_time"
}
],
"invariants": [],
"key": "quantum_time_demo",
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"code": 3,
"domain": "custom",
"equation_note_cs": "Běžný klasický vztah pro teplo. PartnerProf jej zobrazuje jako referenci, ne jako předpis pro CML_A.",
"icon": "♨",
"key": "thermal",
"label_cs": "Teplo a termodynamika",
"reference_equation": "Q = m · c · ΔT",
"task_type": "CUSTOM_SCIENTIFIC_MODEL"
},
{
"code": 4,
"domain": "materials",
"equation_note_cs": "Typický termodynamický vztah používaný při posuzování stavů materiálu. CML/CML_A používají vlastní nastavení.",
"icon": "◇",
"key": "materials",
"label_cs": "Materiály",
"reference_equation": "G = H − T · S",
"task_type": "MATERIAL_DISCOVERY"
},
{
"code": 5,
"domain": "condensed_matter",
"equation_note_cs": "Běžná podmínka fázové rovnováhy. Je zobrazena jen jako klasická reference.",
"icon": "◫",
"key": "phase",
"label_cs": "Fázové stavy",
"reference_equation": "G₁(T,P) = G₂(T,P)",
"task_type": "PHASE_TRANSITION_MAP"
},
{
"code": 6,
"domain": "metrology",
"equation_note_cs": "Obecný klasický model měření. Neurčuje evoluci CML_A.",
"icon": "⌖",
"key": "metrology",
"label_cs": "Měření a kalibrace",
"reference_equation": "y = f(x, p)",
"task_type": "METROLOGY_CALIBRATION"
},
{
"code": 7,
"domain": "cosmology",
"equation_note_cs": "Referenční Friedmannův vztah. CML a CML_A se jím při svém výpočtu neřídí.",
"icon": "◎",
"key": "cosmology",
"label_cs": "Kosmologie",
"reference_equation": "H² = (8πG/3)ρ − k/a²",
"task_type": "COSMOLOGY_FIT"
},
{
"code": 8,
"domain": "custom",
"equation_note_cs": "Obecný symbolický zápis klasické úlohy. Není to náhradní solver ani předpis pro CML_A.",
"icon": "∑",
"key": "custom",
"label_cs": "Obecné číselné pole",
"reference_equation": "F(x, c) = 0",
"task_type": "CUSTOM_SCIENTIFIC_MODEL"
},
{
"cml_ax_profile": "combinatorial_objective",
"code": 24,
"domain": "quantum",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "✂",
"key": "ibm_maxcut_4",
"label_cs": "IBM Max-Cut – 4 uzly",
"label_en": "IBM Max-Cut – 4 nodes",
"reference_equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"reference_equations": [
{
"equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"meaning_cs": "Počet hran vedoucích mezi dvěma částmi řezu.",
"meaning_en": "Counts edges crossing between the two partitions.",
"name_cs": "Cílová funkce Max-Cut",
"name_en": "Max-Cut objective"
},
{
"equation": "Ĥ_C = 1/2 Σ_(i,j)∈E (I − ZᵢZⱼ)",
"meaning_cs": "Běžný kvantový zápis stejné kombinatorické cílové funkce.",
"meaning_en": "Standard quantum representation of the same combinatorial objective.",
"name_cs": "QAOA nákladový Hamiltonián",
"name_en": "QAOA cost Hamiltonian"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_time_evolution",
"code": 20,
"domain": "condensed_matter",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "ψ",
"key": "quantum",
"label_cs": "Kvantová simulace",
"label_en": "Quantum simulation",
"reference_equation": "iℏ ∂ψ/∂t = Ĥψ",
"reference_equations": [
{
"equation": "iℏ ∂ψ/∂t = Ĥψ",
"meaning_cs": "Standardní časový vývoj kvantového stavu.",
"meaning_en": "Standard time evolution of a quantum state.",
"name_cs": "Časová Schrödingerova rovnice",
"name_en": "Time-dependent Schrödinger equation"
},
{
"equation": "U(t) = exp(−iĤt/ℏ)",
"meaning_cs": "Běžný formální zápis časového kroku uzavřeného systému.",
"meaning_en": "Conventional formal time step for a closed quantum system.",
"name_cs": "Unitární propagátor",
"name_en": "Unitary propagator"
},
{
"equation": "⟨A⟩ = ⟨ψ|Â|ψ⟩",
"meaning_cs": "Standardní převod kvantového stavu na měřitelnou střední hodnotu.",
"meaning_en": "Standard mapping from a quantum state to an observable expectation.",
"name_cs": "Střední hodnota pozorovatelné",
"name_en": "Observable expectation value"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_tunneling",
"code": 21,
"domain": "nuclear",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "☀",
"key": "fusion_plasma",
"label_cs": "Jaderná fúze a plazma",
"label_en": "Nuclear fusion and plasma",
"reference_equation": "T ≈ exp(−2∫κ(r)dr)",
"reference_equations": [
{
"equation": "T ≈ exp(−2∫κ(r)dr)",
"meaning_cs": "Klasická semiklasická aproximace průchodu bariérou.",
"meaning_en": "Classical semiclassical approximation for barrier penetration.",
"name_cs": "WKB tunelování",
"name_en": "WKB tunnelling"
},
{
"equation": "κ(r) = √(2μ[V(r)−E]) / ℏ",
"meaning_cs": "Lokální útlum pod bariérou.",
"meaning_en": "Local under-barrier attenuation factor.",
"name_cs": "Lokální κ",
"name_en": "Local κ"
},
{
"equation": "R = n₁n₂⟨σv⟩ / (1 + δ₁₂)",
"meaning_cs": "Běžný plazmový vztah pro četnost fúzních reakcí.",
"meaning_en": "Conventional plasma relation for fusion-reaction rate.",
"name_cs": "Objemová reakční rychlost",
"name_en": "Volumetric reaction rate"
}
],
"task_type": "FUSION_PLASMA_MODEL"
},
{
"cml_ax_profile": "quantum_tunneling",
"code": 22,
"domain": "nuclear",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "⇥",
"key": "quantum_tunneling",
"label_cs": "Kvantové tunelování",
"label_en": "Quantum tunnelling",
"reference_equation": "κ = √(2μ(V₀−E)) / ℏ",
"reference_equations": [
{
"equation": "κ = √(2μ(V₀−E)) / ℏ",
"meaning_cs": "Určuje exponenciální útlum v obdélníkové bariéře.",
"meaning_en": "Sets exponential attenuation in a rectangular barrier.",
"name_cs": "Koeficient pod bariérou",
"name_en": "Under-barrier coefficient"
},
{
"equation": "T ≈ exp(−2κa)",
"meaning_cs": "Klasická aproximace pravděpodobnosti průchodu bariérou.",
"meaning_en": "Classical approximation of barrier transmission.",
"name_cs": "WKB transmisní koeficient",
"name_en": "WKB transmission coefficient"
},
{
"equation": "E_th ≈ 3/2 k_B T",
"meaning_cs": "Referenční převod teploty na částicovou energetickou škálu.",
"meaning_en": "Reference conversion from temperature to a particle-energy scale.",
"name_cs": "Tepelná energetická škála",
"name_en": "Thermal energy scale"
}
],
"task_type": "QUANTUM_TUNNELING"
},
{
"cml_ax_profile": "quantum_energy",
"code": 23,
"domain": "materials",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "⬡",
"key": "quantum_material",
"label_cs": "Kvantové materiály a grafen",
"label_en": "Quantum materials and graphene",
"reference_equation": "Ĥψ = Eψ",
"reference_equations": [
{
"equation": "Ĥψ = Eψ",
"meaning_cs": "Standardní vlastní úloha kvantového materiálu.",
"meaning_en": "Standard eigenvalue problem for a quantum material.",
"name_cs": "Stacionární Schrödingerova rovnice",
"name_en": "Stationary Schrödinger equation"
},
{
"equation": "E_±(k) ≈ ±ℏ v_F |k|",
"meaning_cs": "Referenční lineární disperze v okolí Diracova bodu.",
"meaning_en": "Reference linear dispersion near a Dirac point.",
"name_cs": "Nízkenergetická disperze grafenu",
"name_en": "Low-energy graphene dispersion"
}
],
"task_type": "QUANTUM_MATERIAL_MODEL"
},
{
"cml_ax_profile": "combinatorial_objective",
"code": 25,
"domain": "ibm_maxcut_5",
"equation_note_cs": "Standardní formulace stejné Max-Cut úlohy; EvO realizaci neurčuje dosazením do této rovnice.",
"equation_note_en": "Standard formulation of the same Max-Cut task; EvO does not choose the realization by simply evaluating this equation.",
"icon": "✂",
"key": "ibm_maxcut_5",
"label_cs": "IBM Max-Cut – 5 uzlů",
"label_en": "IBM Max-Cut – 5 nodes",
"reference_equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"reference_equations": [
{
"equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"meaning_cs": "Počet hran mezi dvěma částmi řezu.",
"meaning_en": "Number of edges crossing the partition.",
"name_cs": "Cílová funkce Max-Cut",
"name_en": "Max-Cut objective"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_energy",
"code": 26,
"domain": "quantum_vqe_h2",
"equation_note_cs": "Jednoqubitová redukovaná VQE formulace H₂ pro přímé srovnání s IBM. Rovnice udržuje kandidátní reality fyzikálně konzistentní; realizaci vybírá EvO.",
"equation_note_en": "One-qubit reduced H₂ VQE formulation for direct IBM comparison. The equation keeps candidate realities physically consistent; EvO selects the realization.",
"icon": "H₂",
"key": "quantum_vqe_h2",
"label_cs": "H₂ – energie základního stavu",
"label_en": "H₂ ground-state energy",
"reference_equation": "E(θ)=c_I+c_Z cosθ+c_X sinθ+E_nn",
"reference_equations": [
{
"equation": "Ĥ = c_I I + c_Z Z + c_X X",
"meaning_cs": "IBM používá pro demonstraci H₂ jednoqubitový Hamiltonián po redukci symetrie.",
"meaning_en": "IBM uses a one-qubit H₂ Hamiltonian after symmetry reduction.",
"name_cs": "Redukovaný Hamiltonián H₂",
"name_en": "Reduced H₂ Hamiltonian"
},
{
"equation": "E(θ)=c_I+c_Z cosθ+c_X sinθ+E_nn",
"meaning_cs": "Pro stav R_y(θ)|0⟩ dává očekávanou celkovou energii v Hartree.",
"meaning_en": "For R_y(θ)|0⟩ gives the total expectation energy in Hartree.",
"name_cs": "Energie kandidátního stavu",
"name_en": "Candidate-state energy"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_phase",
"code": 27,
"domain": "quantum_qpe_phase",
"equation_note_cs": "Fázový profil sleduje binární zpřesňování jediného výsledku. CML_Ax ověřuje výslednou fázi a bitovou přesnost.",
"equation_note_en": "The phase profile tracks binary refinement toward one result. CML_Ax validates the resulting phase and bit precision.",
"icon": "φ",
"key": "quantum_qpe_phase",
"label_cs": "Kvantový odhad fáze – QPE",
"label_en": "Quantum phase estimation – QPE",
"reference_equation": "U|ψ⟩ = e^{2πiφ}|ψ⟩",
"reference_equations": [
{
"equation": "U|ψ⟩ = e^{2πiφ}|ψ⟩",
"meaning_cs": "QPE hledá φ z vlastní hodnoty unitárního operátoru.",
"meaning_en": "QPE estimates φ from the unitary eigenvalue.",
"name_cs": "Vlastní fáze",
"name_en": "Eigenphase"
},
{
"equation": "φ_m = 0.b₁b₂…b_m",
"meaning_cs": "Každý další bit zpřesňuje interval fáze.",
"meaning_en": "Each additional bit refines the phase interval.",
"name_cs": "Binární odhad",
"name_en": "Binary estimate"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_time_evolution",
"code": 28,
"domain": "quantum_time_evolution",
"equation_note_cs": "Pokračující simulace: každý realizovaný chronon se stává stavem dalšího kroku až do koncového času/cíle.",
"equation_note_en": "Continuing simulation: each realized chronon becomes the state for the next step until terminal time/goal.",
"icon": "⏱",
"key": "quantum_time_evolution",
"label_cs": "Kvantová časová evoluce",
"label_en": "Quantum time evolution",
"reference_equation": "U(t)=exp(−iĤt/ℏ)",
"reference_equations": [
{
"equation": "U(t)=exp(−iĤt/ℏ)",
"meaning_cs": "Standardní kvantový propagátor.",
"meaning_en": "Standard quantum propagator.",
"name_cs": "Unitární časový vývoj",
"name_en": "Unitary time evolution"
},
{
"equation": "⟨A(t)⟩=⟨ψ(t)|Â|ψ(t)⟩",
"meaning_cs": "Měřená trajektorie pozorovatelné.",
"meaning_en": "Observable trajectory.",
"name_cs": "Střední hodnota",
"name_en": "Expectation value"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_correlation",
"code": 29,
"domain": "quantum_chsh",
"equation_note_cs": "Korelační profil vrací konkrétní CHSH hodnotu a její vztah ke klasické mezi 2 a Tsirelsonově mezi 2√2.",
"equation_note_en": "Correlation profile returns the concrete CHSH value and its relation to the classical bound 2 and Tsirelson bound 2√2.",
"icon": "≋",
"key": "quantum_chsh",
"label_cs": "Bell / CHSH korelace",
"label_en": "Bell / CHSH correlations",
"reference_equation": "S = E(a,b)+E(a,b′)+E(a′,b)−E(a′,b′)",
"reference_equations": [
{
"equation": "S = E₀₀+E₀₁+E₁₀−E₁₁",
"meaning_cs": "Kombinuje čtyři korelace dvou měřicích nastavení.",
"meaning_en": "Combines four correlations from two measurement settings per side.",
"name_cs": "CHSH parametr",
"name_en": "CHSH parameter"
},
{
"equation": "|S| ≤ 2√2",
"meaning_cs": "Maximální kvantová hodnota.",
"meaning_en": "Maximum quantum value.",
"name_cs": "Tsirelsonova mez",
"name_en": "Tsirelson bound"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_energy",
"code": 30,
"domain": "quantum_vqe_pauli2",
"equation_note_cs": "EvO dostává Hamiltonián a pouze práh publikovaného IBM hardware výsledku. Přesná vlastní energie není součástí schváleného výpočetního pole.",
"equation_note_en": "EvO receives the Hamiltonian and only the published IBM hardware-result threshold. The exact eigenvalue is not part of the approved compute field.",
"icon": "H₂q",
"key": "quantum_vqe_pauli2",
"label_cs": "IBM 2-qubit Pauli VQE – slepá výzva",
"label_en": "IBM 2-qubit Pauli VQE – blind challenge",
"reference_equation": "H = 0.398 YZ − 0.398 ZI − 0.0113 ZZ + 0.181 XX",
"reference_equations": [
{
"equation": "H=0.398YZ−0.398ZI−0.0113ZZ+0.181XX",
"meaning_cs": "Stejný dvouqubitový Hamiltonián jako v IBM VQE výukové úloze.",
"meaning_en": "The same two-qubit Hamiltonian used in IBM’s VQE learning workload.",
"name_cs": "Pauli Hamiltonián",
"name_en": "Pauli Hamiltonian"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_time_evolution",
"code": 31,
"domain": "quantum_xxz_10",
"equation_note_cs": "EvO dostává IBM Hamiltonián, Néelův počáteční stav a koncový čas. Referenční ⟨ZZ⟩ není součástí vstupu; porovnává se až po běhu.",
"equation_note_en": "EvO receives the IBM Hamiltonian, Néel initial state, and final time. The reference ⟨ZZ⟩ is absent from the input and compared only after the run.",
"icon": "XXZ",
"key": "quantum_xxz_10",
"label_cs": "IBM XXZ 10-site – slepá časová evoluce",
"label_en": "IBM XXZ 10-site – blind time evolution",
"reference_equation": "H=Σ[Jᵢ/2(XX+YY)+Jᵢ ZZ], |ψ₀⟩=|1010101010⟩",
"reference_equations": [
{
"equation": "H=Σ[Jᵢ/2 XᵢXᵢ₊₁ + Jᵢ/2 YᵢYᵢ₊₁ + Jᵢ ZᵢZᵢ₊₁]",
"meaning_cs": "IBM 10-site instance se seed=0 a devíti zveřejněnými vazbami.",
"meaning_en": "IBM 10-site instance with seed=0 and nine published couplings.",
"name_cs": "XXZ Hamiltonián",
"name_en": "XXZ Hamiltonian"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "combinatorial_packed_objective",
"code": 32,
"domain": "ibm_maxcut_156",
"equation_note_cs": "Přesně zveřejněná IBM/Q-CTRL instance: 156 uzlů, 234 hran, optimum 210.",
"equation_note_en": "Exact IBM/Q-CTRL published instance: 156 nodes, 234 edges, optimum 210.",
"icon": "156",
"key": "ibm_maxcut_156",
"label_cs": "IBM Max-Cut 156 — utility-scale",
"label_en": "IBM Max-Cut 156 — utility-scale",
"reference_equation": "max Σ_(i,j∈E) [x_i ≠ x_j], G=random_regular_graph(3,156,seed=8)",
"reference_equations": [
{
"equation": "max Σ_(i,j∈E) (x_i+x_j−2x_ix_j)",
"meaning_cs": "Stejný graf jako IBM/Q-CTRL benchmark.",
"meaning_en": "Same graph as the IBM/Q-CTRL benchmark.",
"name_cs": "Max-Cut",
"name_en": "Max-Cut"
}
],
"task_type": "OPTIMIZATION"
}
],
"schema": "PartnerProf-Reality/1.1",
"variables": [
{
"canonical_unit": "m",
"code": 1,
"default_max": 1000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění geometrii zadaného stavu.",
"reality_cs": "Omezuje, kde a v jakém měřítku může realizace existovat.",
"result_cs": "Změna délky mění prostor přípustných stavů.",
"what_cs": "Udává velikost nebo vzdálenost v prostoru."
},
"icon": "↔",
"key": "length",
"kind": "scalar",
"label_cs": "Délka",
"symbol": "ℓ",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
},
{
"code": 4,
"factor": 1000.0,
"key": "km",
"label": "km",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 2,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"metrology",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Přidává časovou souřadnici nebo omezuje dobu realizace.",
"reality_cs": "Vymezuje, kdy je stav přípustný.",
"result_cs": "Může změnit dosažitelný stav i jeho časové umístění.",
"what_cs": "Určuje okamžik nebo délku trvání děje."
},
"icon": "◷",
"key": "time",
"kind": "scalar",
"label_cs": "Čas",
"symbol": "t",
"units": [
{
"code": 10,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
},
{
"code": 11,
"factor": 0.001,
"key": "ms",
"label": "ms",
"offset": 0.0
},
{
"code": 12,
"factor": 60.0,
"key": "min",
"label": "min",
"offset": 0.0
},
{
"code": 13,
"factor": 3600.0,
"key": "h",
"label": "h",
"offset": 0.0
}
]
},
{
"canonical_unit": "kg",
"code": 3,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"thermal",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění setrvačné a energetické vlastnosti stavu.",
"reality_cs": "Určuje část reality spojenou s hmotností objektu.",
"result_cs": "Ovlivňuje realizace závislé na hmotnosti a energii.",
"what_cs": "Udává množství hmoty zadaného objektu."
},
"icon": "▣",
"key": "mass",
"kind": "scalar",
"label_cs": "Hmotnost",
"symbol": "m",
"units": [
{
"code": 20,
"factor": 1.0,
"key": "kg",
"label": "kg",
"offset": 0.0
},
{
"code": 21,
"factor": 0.001,
"key": "g",
"label": "g",
"offset": 0.0
},
{
"code": 22,
"factor": 1e-06,
"key": "mg",
"label": "mg",
"offset": 0.0
}
]
},
{
"canonical_unit": "K",
"code": 4,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"thermal",
"materials",
"phase",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění energetické podmínky zadaného pole.",
"effect_en": "Sets the thermal condition represented in the approved field.",
"reality_cs": "Vymezuje teplotní oblast, ve které hledáme realizaci.",
"reality_en": "Defines the temperature regime in which admissibility is evaluated.",
"result_cs": "Může rozhodnout, zda je daný stav za zadaných podmínek vůbec přípustný.",
"result_en": "It remains an explicit input condition; a new physical temperature is not inferred from vector coordinates without a declared decoder.",
"what_cs": "Udává tepelný stav prostředí nebo objektu.",
"what_en": "Measured or fixed thermodynamic temperature of the current environment."
},
"icon": "♨",
"key": "temperature",
"kind": "scalar",
"label_cs": "Teplota",
"label_en": "Temperature",
"symbol": "T",
"units": [
{
"code": 30,
"factor": 1.0,
"key": "K",
"label": "K",
"offset": 0.0
},
{
"code": 31,
"factor": 1.0,
"key": "C",
"label": "°C",
"offset": 273.15
}
]
},
{
"canonical_unit": "Pa",
"code": 5,
"default_max": 1000000000000000.0,
"default_min": 0.0,
"domains": [
"thermal",
"materials",
"phase",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění podmínky prostředí a rovnovážné stavy.",
"reality_cs": "Omezuje pole na stavy dosažitelné při daném tlaku.",
"result_cs": "U materiálů a fází může výrazně měnit, které realizace existují.",
"what_cs": "Udává sílu působící na jednotku plochy."
},
"icon": "⇊",
"key": "pressure",
"kind": "scalar",
"label_cs": "Tlak",
"symbol": "p",
"units": [
{
"code": 40,
"factor": 1.0,
"key": "Pa",
"label": "Pa",
"offset": 0.0
},
{
"code": 41,
"factor": 1000.0,
"key": "kPa",
"label": "kPa",
"offset": 0.0
},
{
"code": 42,
"factor": 1000000.0,
"key": "MPa",
"label": "MPa",
"offset": 0.0
},
{
"code": 43,
"factor": 1000000000.0,
"key": "GPa",
"label": "GPa",
"offset": 0.0
},
{
"code": 44,
"factor": 100000.0,
"key": "bar",
"label": "bar",
"offset": 0.0
}
]
},
{
"canonical_unit": "kg/m³",
"code": 6,
"default_max": 1000000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"materials",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění lokální stav hmoty v poli.",
"reality_cs": "Vymezuje materiálové nebo prostorové stavy podle hustoty.",
"result_cs": "Mění realizace závislé na rozložení hmoty.",
"what_cs": "Udává hmotnost obsaženou v jednotce objemu."
},
"icon": "ρ",
"key": "density",
"kind": "scalar",
"label_cs": "Hustota",
"symbol": "ρ",
"units": [
{
"code": 50,
"factor": 1.0,
"key": "kg_m3",
"label": "kg/m³",
"offset": 0.0
},
{
"code": 51,
"factor": 1000.0,
"key": "g_cm3",
"label": "g/cm³",
"offset": 0.0
}
]
},
{
"canonical_unit": "A",
"code": 7,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává elektrický zdroj do popisu stavu.",
"reality_cs": "Mění elektromagnetickou část pole reality.",
"result_cs": "Ovlivňuje realizované elektrické a magnetické stavy.",
"what_cs": "Udává tok elektrického náboje."
},
"icon": "➜",
"key": "current",
"kind": "scalar",
"label_cs": "Elektrický proud",
"symbol": "I",
"units": [
{
"code": 60,
"factor": 1.0,
"key": "A",
"label": "A",
"offset": 0.0
},
{
"code": 61,
"factor": 0.001,
"key": "mA",
"label": "mA",
"offset": 0.0
},
{
"code": 62,
"factor": 1e-06,
"key": "uA",
"label": "µA",
"offset": 0.0
}
]
},
{
"canonical_unit": "V",
"code": 8,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"electromagnetism",
"metrology",
"custom"
],
"help": {
"effect_cs": "Mění elektrické podmínky soustavy.",
"reality_cs": "Vymezuje elektrické stavy, které připouštíme.",
"result_cs": "Ovlivňuje proudy a další elektrické realizace.",
"what_cs": "Udává rozdíl elektrického potenciálu."
},
"icon": "±",
"key": "voltage",
"kind": "scalar",
"label_cs": "Napětí",
"symbol": "U",
"units": [
{
"code": 70,
"factor": 1.0,
"key": "V",
"label": "V",
"offset": 0.0
},
{
"code": 71,
"factor": 0.001,
"key": "mV",
"label": "mV",
"offset": 0.0
},
{
"code": 72,
"factor": 1000.0,
"key": "kV",
"label": "kV",
"offset": 0.0
}
]
},
{
"canonical_unit": "T",
"code": 9,
"default_max": 1000000.0,
"default_min": -1000000.0,
"domains": [
"electromagnetism",
"materials",
"custom"
],
"help": {
"effect_cs": "Určuje magnetickou složku vstupního stavu.",
"reality_cs": "Omezuje nebo přidává magnetické podmínky realizace.",
"result_cs": "Mění přípustné magnetické a materiálové stavy.",
"what_cs": "Popisuje velikost magnetického pole."
},
"icon": "∪",
"key": "magnetic_field",
"kind": "scalar",
"label_cs": "Magnetická indukce",
"symbol": "B",
"units": [
{
"code": 80,
"factor": 1.0,
"key": "T",
"label": "T",
"offset": 0.0
},
{
"code": 81,
"factor": 0.001,
"key": "mT",
"label": "mT",
"offset": 0.0
},
{
"code": 82,
"factor": 1e-06,
"key": "uT",
"label": "µT",
"offset": 0.0
}
]
},
{
"canonical_unit": "Hz",
"code": 10,
"default_max": 1000000000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"electromagnetism",
"metrology",
"custom"
],
"help": {
"effect_cs": "Přidává periodickou časovou podmínku.",
"reality_cs": "Vymezuje dynamické stavy podle jejich periodicity.",
"result_cs": "Mění realizace, které závisí na časové frekvenci.",
"what_cs": "Udává počet opakování děje za sekundu."
},
"icon": "∿",
"key": "frequency",
"kind": "scalar",
"label_cs": "Frekvence",
"symbol": "f",
"units": [
{
"code": 90,
"factor": 1.0,
"key": "Hz",
"label": "Hz",
"offset": 0.0
},
{
"code": 91,
"factor": 1000.0,
"key": "kHz",
"label": "kHz",
"offset": 0.0
},
{
"code": 92,
"factor": 1000000.0,
"key": "MHz",
"label": "MHz",
"offset": 0.0
},
{
"code": 93,
"factor": 1000000000.0,
"key": "GHz",
"label": "GHz",
"offset": 0.0
}
]
},
{
"canonical_unit": "m/s",
"code": 11,
"default_max": 299792458.0,
"default_min": -299792458.0,
"domains": [
"mechanics",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Přidává pohybovou složku stavu.",
"reality_cs": "Omezuje množinu možných pohybových stavů.",
"result_cs": "Mění realizaci tam, kde je rozhodující pohyb.",
"what_cs": "Udává rychlost a znaménkem také zvolený směr po ose."
},
"icon": "➟",
"key": "velocity",
"kind": "scalar",
"label_cs": "Rychlost",
"symbol": "v",
"units": [
{
"code": 100,
"factor": 1.0,
"key": "m_s",
"label": "m/s",
"offset": 0.0
},
{
"code": 101,
"factor": 0.2777777777777778,
"key": "km_h",
"label": "km/h",
"offset": 0.0
}
]
},
{
"canonical_unit": "J",
"code": 12,
"default_max": 1e+30,
"default_min": -1e+30,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"materials",
"phase",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění energetické podmínky realizace.",
"reality_cs": "Omezuje pole na stavy s požadovanou energií nebo energetickým rozsahem.",
"result_cs": "Může zásadně změnit, zda realizace existuje.",
"what_cs": "Udává energetickou hodnotu části zadaného stavu."
},
"icon": "ϟ",
"key": "energy",
"kind": "scalar",
"label_cs": "Energie",
"symbol": "E",
"units": [
{
"code": 110,
"factor": 1.0,
"key": "J",
"label": "J",
"offset": 0.0
},
{
"code": 111,
"factor": 0.001,
"key": "mJ",
"label": "mJ",
"offset": 0.0
},
{
"code": 112,
"factor": 1000.0,
"key": "kJ",
"label": "kJ",
"offset": 0.0
},
{
"code": 113,
"factor": 1.602176634e-19,
"key": "eV",
"label": "eV",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 13,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává prostorovou souřadnici.",
"reality_cs": "Určuje konkrétní část prostoru, kterou zahrnujeme do pole.",
"result_cs": "Mění prostorové umístění realizovaného stavu.",
"what_cs": "Udává polohu na ose X."
},
"icon": "x",
"key": "position_x",
"kind": "scalar",
"label_cs": "Poloha X",
"symbol": "x",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 14,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává prostorovou souřadnici.",
"reality_cs": "Určuje konkrétní část prostoru, kterou zahrnujeme do pole.",
"result_cs": "Mění prostorové umístění realizovaného stavu.",
"what_cs": "Udává polohu na ose Y."
},
"icon": "y",
"key": "position_y",
"kind": "scalar",
"label_cs": "Poloha Y",
"symbol": "y",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 15,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává prostorovou souřadnici.",
"reality_cs": "Určuje konkrétní část prostoru, kterou zahrnujeme do pole.",
"result_cs": "Mění prostorové umístění realizovaného stavu.",
"what_cs": "Udává polohu na ose Z."
},
"icon": "z",
"key": "position_z",
"kind": "scalar",
"label_cs": "Poloha Z",
"symbol": "z",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
}
]
},
{
"canonical_unit": "direction",
"code": 16,
"default_max": 3,
"default_min": -3,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává orientovaný směr do stavu.",
"reality_cs": "Vylučuje realizace s jinou zvolenou orientací, pokud je směr pevný.",
"result_cs": "Mění směrovou část realizovaného pole.",
"what_cs": "Určuje orientaci vybrané části systému."
},
"icon": "→",
"key": "direction",
"kind": "categorical",
"label_cs": "Směr",
"options": [
{
"code": 1,
"key": "+x",
"label": "+X"
},
{
"code": -1,
"key": "-x",
"label": "−X"
},
{
"code": 2,
"key": "+y",
"label": "+Y"
},
{
"code": -2,
"key": "-y",
"label": "−Y"
},
{
"code": 3,
"key": "+z",
"label": "+Z"
},
{
"code": -3,
"key": "-z",
"label": "−Z"
}
],
"symbol": "→"
},
{
"canonical_unit": "material_code",
"code": 17,
"default_max": 8,
"default_min": 1,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"materials",
"phase",
"custom"
],
"help": {
"effect_cs": "Přidává jednoznačnou materiálovou identitu do vstupního stavu.",
"reality_cs": "Omezuje hledání na stavy příslušné vybranému materiálu.",
"result_cs": "Může měnit fyzikálně dostupné realizace materiálového systému.",
"what_cs": "Určuje známý materiál z databáze PartnerProf."
},
"icon": "◆",
"key": "material",
"kind": "categorical",
"label_cs": "Materiál",
"options": [
{
"code": 1,
"key": "Cu",
"label": "Měď (Cu)"
},
{
"code": 2,
"key": "Al",
"label": "Hliník (Al)"
},
{
"code": 3,
"key": "Fe",
"label": "Železo (Fe)"
},
{
"code": 4,
"key": "Si",
"label": "Křemík (Si)"
},
{
"code": 5,
"key": "C",
"label": "Uhlík (C)"
},
{
"code": 6,
"key": "H2O",
"label": "Voda (H₂O)"
},
{
"code": 7,
"key": "air",
"label": "Vzduch"
},
{
"code": 8,
"key": "vacuum",
"label": "Vakuum"
}
],
"symbol": "M"
},
{
"canonical_unit": "m",
"code": 101,
"default_max": 1e-08,
"default_min": 1e-16,
"domains": [
"nuclear",
"particle",
"custom"
],
"help": {
"effect_cs": "Mění geometrickou část bariéry.",
"effect_en": "Sets the current geometric separation represented in the approved field.",
"reality_cs": "Vymezuje jadernou konfiguraci.",
"reality_en": "Defines where the present nuclear configuration lies relative to the declared target region.",
"result_cs": "Vstupuje do strukturovaného pole pro CML_Q/CML_A.",
"result_en": "The value is an input fact. A returned vector coordinate is not presented as a new distance unless an explicit decoding rule exists.",
"what_cs": "Okamžitá vzdálenost středů jader.",
"what_en": "Instantaneous centre-to-centre distance of the two nuclei."
},
"icon": "↔",
"key": "nuclear_distance",
"kind": "scalar",
"label_cs": "Vzdálenost jader",
"label_en": "Nuclear distance",
"symbol": "rₙ",
"units": [
{
"code": 1001,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 1002,
"factor": 1e-09,
"key": "nm",
"label": "nm",
"offset": 0.0
},
{
"code": 1003,
"factor": 1e-12,
"key": "pm",
"label": "pm",
"offset": 0.0
},
{
"code": 1004,
"factor": 1e-15,
"key": "fm",
"label": "fm",
"offset": 0.0
}
]
},
{
"canonical_unit": "eV",
"code": 102,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"nuclear",
"particle",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Mění podmínky tunelování.",
"effect_en": "Sets the energetic obstacle represented in the approved field.",
"reality_cs": "Vymezuje energeticky nepřípustnou oblast.",
"reality_en": "Restricts the field by the entered barrier energy and its allowed range.",
"result_cs": "Je explicitní složkou vstupního pole.",
"result_en": "If a companion tunnelling projection is returned, the same barrier height is listed in its numeric audit.",
"what_cs": "Energetická výška zadané bariéry.",
"what_en": "Energy height of the explicitly defined barrier."
},
"icon": "▥",
"key": "barrier_energy",
"kind": "scalar",
"label_cs": "Výška bariéry",
"label_en": "Barrier height",
"symbol": "V₀",
"units": [
{
"code": 1010,
"factor": 1.0,
"key": "eV",
"label": "eV",
"offset": 0.0
},
{
"code": 1011,
"factor": 1000.0,
"key": "keV",
"label": "keV",
"offset": 0.0
},
{
"code": 1012,
"factor": 1000000.0,
"key": "MeV",
"label": "MeV",
"offset": 0.0
}
]
},
{
"canonical_unit": "m⁻³",
"code": 103,
"default_max": 1e+32,
"default_min": 0.0,
"domains": [
"nuclear",
"custom"
],
"help": {
"effect_cs": "Mění kolektivní stav plazmatu.",
"effect_en": "Changes the collective plasma state.",
"reality_cs": "Vymezuje hustotní režim.",
"reality_en": "Defines the density regime.",
"result_cs": "Vstupuje do jaderného a plazmového pole.",
"result_en": "Enters the nuclear and plasma field.",
"what_cs": "Počet částic plazmatu v objemu.",
"what_en": "Number of plasma particles per volume."
},
"icon": "☁",
"key": "plasma_density",
"kind": "scalar",
"label_cs": "Hustota plazmatu",
"label_en": "Plasma density",
"symbol": "nₚ",
"units": [
{
"code": 1020,
"factor": 1.0,
"key": "m-3",
"label": "m⁻³",
"offset": 0.0
},
{
"code": 1021,
"factor": 1000000.0,
"key": "cm-3",
"label": "cm⁻³",
"offset": 0.0
}
]
},
{
"canonical_unit": "W/m²",
"code": 104,
"default_max": 1e+24,
"default_min": 0.0,
"domains": [
"electromagnetism",
"nuclear",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění vnější buzení.",
"effect_en": "Changes the external excitation.",
"reality_cs": "Vymezuje radiační prostředí.",
"reality_en": "Defines the radiation environment.",
"result_cs": "Je číselnou složkou kvantového zadání.",
"result_en": "Is a numerical component of the quantum task.",
"what_cs": "Výkon elektromagnetického pole na plochu.",
"what_en": "Electromagnetic power per area."
},
"icon": "≋",
"key": "em_intensity",
"kind": "scalar",
"label_cs": "Intenzita EM záření",
"label_en": "EM radiation intensity",
"symbol": "Iₑₘ",
"units": [
{
"code": 1030,
"factor": 1.0,
"key": "W_m2",
"label": "W/m²",
"offset": 0.0
},
{
"code": 1031,
"factor": 10000000.0,
"key": "kW_cm2",
"label": "kW/cm²",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 105,
"default_max": 0.01,
"default_min": 1e-10,
"domains": [
"electromagnetism",
"nuclear",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění frekvenční vazbu.",
"effect_en": "Changes frequency coupling.",
"reality_cs": "Určuje optický režim.",
"reality_en": "Defines the optical regime.",
"result_cs": "Vstupuje do CML_Q projekce prostřednictvím vektoru.",
"result_en": "Enters the quantum projection through the submitted vector.",
"what_cs": "Vlnová délka laserového buzení.",
"what_en": "Wavelength of the laser excitation."
},
"icon": "↝",
"key": "laser_wavelength",
"kind": "scalar",
"label_cs": "Vlnová délka laseru",
"label_en": "Laser wavelength",
"symbol": "λL",
"units": [
{
"code": 1040,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 1041,
"factor": 1e-09,
"key": "nm",
"label": "nm",
"offset": 0.0
},
{
"code": 1042,
"factor": 1e-06,
"key": "um",
"label": "µm",
"offset": 0.0
}
]
},
{
"canonical_unit": "mode_code",
"code": 106,
"default_max": 4,
"default_min": 1,
"domains": [
"electromagnetism",
"nuclear",
"materials",
"custom"
],
"help": {
"effect_cs": "Rozlišuje laser, maser a kombinované buzení.",
"effect_en": "Distinguishes laser, maser and combined excitation.",
"reality_cs": "Určuje zdrojovou konfiguraci.",
"reality_en": "Defines the source configuration.",
"result_cs": "Je kódován bez textové interpretace.",
"result_en": "Encoded as a categorical state without free-text interpretation.",
"what_cs": "Typ externího buzení.",
"what_en": "Type of external excitation."
},
"icon": "✦",
"key": "excitation_mode",
"kind": "categorical",
"label_cs": "Režim buzení",
"label_en": "Excitation mode",
"options": [
{
"code": 1,
"key": "laser",
"label": "Laser"
},
{
"code": 2,
"key": "maser",
"label": "Maser"
},
{
"code": 3,
"key": "laser_maser",
"label": "Laser + maser"
},
{
"code": 4,
"key": "microwave",
"label": "Mikrovlnné buzení"
}
],
"symbol": "X"
},
{
"canonical_unit": "species_code",
"code": 107,
"default_max": 10,
"default_min": 1,
"domains": [
"materials",
"nuclear",
"custom"
],
"help": {
"effect_cs": "Mění materiálovou identitu pole.",
"effect_en": "Changes material identity of the field.",
"reality_cs": "Vymezuje chemické nebo izotopové složení.",
"reality_en": "Defines chemical or isotopic composition.",
"result_cs": "Je přenesen jednoznačným kódem.",
"result_en": "Transferred by an unambiguous code.",
"what_cs": "Zvolená příměs nebo izotop.",
"what_en": "Selected impurity or isotope."
},
"icon": "•",
"key": "dopant",
"kind": "categorical",
"label_cs": "Dopant / izotop",
"label_en": "Dopant / isotope",
"options": [
{
"code": 1,
"key": "D+",
"label": "D⁺"
},
{
"code": 2,
"key": "T+",
"label": "T⁺"
},
{
"code": 3,
"key": "Ag",
"label": "Ag"
},
{
"code": 4,
"key": "Ni",
"label": "Ni"
},
{
"code": 5,
"key": "Si",
"label": "Si"
},
{
"code": 6,
"key": "B",
"label": "B"
},
{
"code": 7,
"key": "N",
"label": "N"
},
{
"code": 8,
"key": "C13",
"label": "¹³C"
}
],
"symbol": "D"
},
{
"canonical_unit": "fraction",
"code": 108,
"default_max": 1.0,
"default_min": 0.0,
"domains": [
"materials",
"nuclear",
"custom"
],
"help": {
"effect_cs": "Mění koncentraci dopantu.",
"effect_en": "Changes dopant concentration.",
"reality_cs": "Omezuje složení materiálu.",
"reality_en": "Constrains material composition.",
"result_cs": "Je explicitní číselnou složkou.",
"result_en": "Is an explicit numerical component.",
"what_cs": "Molární nebo atomový podíl příměsi.",
"what_en": "Molar or atomic fraction of the dopant."
},
"icon": "%",
"key": "dopant_fraction",
"kind": "scalar",
"label_cs": "Podíl dopantu",
"label_en": "Dopant fraction",
"symbol": "cD",
"units": [
{
"code": 1060,
"factor": 1.0,
"key": "fraction",
"label": "0–1",
"offset": 0.0
},
{
"code": 1061,
"factor": 0.01,
"key": "percent",
"label": "%",
"offset": 0.0
},
{
"code": 1062,
"factor": 1e-06,
"key": "ppm",
"label": "ppm",
"offset": 0.0
}
]
},
{
"canonical_unit": "bond_code",
"code": 109,
"default_max": 3,
"default_min": 2,
"domains": [
"materials",
"custom"
],
"help": {
"effect_cs": "Rozlišuje sp² a sp³ síť.",
"effect_en": "Distinguishes sp² and sp³ networks.",
"reality_cs": "Určuje vazebnou topologii vstupu.",
"reality_en": "Defines the bonding topology of the input.",
"result_cs": "Je kódován jako kategoriální stav.",
"result_en": "Encoded as a categorical state.",
"what_cs": "Převažující vazebný stav uhlíku.",
"what_en": "Dominant carbon bonding state."
},
"icon": "⬢",
"key": "carbon_hybridization",
"kind": "categorical",
"label_cs": "Hybridizace uhlíku",
"label_en": "Carbon hybridization",
"options": [
{
"code": 2,
"key": "sp2",
"label": "sp²"
},
{
"code": 3,
"key": "sp3",
"label": "sp³"
},
{
"code": 2.5,
"key": "mixed",
"label": "smíšená sp²/sp³"
}
],
"symbol": "spⁿ"
},
{
"canonical_unit": "count",
"code": 110,
"default_max": 10000.0,
"default_min": 1.0,
"domains": [
"materials",
"custom"
],
"help": {
"effect_cs": "Mění tloušťku a vazbu vrstev.",
"effect_en": "Changes thickness and inter-layer coupling.",
"reality_cs": "Vymezuje rozměr materiálu.",
"reality_en": "Defines material dimensionality.",
"result_cs": "Je číselnou složkou pole.",
"result_en": "Is a numerical field component.",
"what_cs": "Počet aktivních vrstev.",
"what_en": "Number of active graphene layers."
},
"icon": "≡",
"key": "graphene_layers",
"kind": "scalar",
"label_cs": "Počet vrstev grafenu",
"label_en": "Graphene layer count",
"symbol": "NL",
"units": [
{
"code": 1070,
"factor": 1.0,
"key": "count",
"label": "vrstev",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 111,
"default_max": 1000000.0,
"default_min": 16.0,
"domains": [
"nuclear",
"materials",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Mění numerické rozlišení zakódovaného pole.",
"effect_en": "Changes numerical resolution of the encoded field.",
"reality_cs": "Nezvětšuje automaticky matici CML_A.",
"reality_en": "Does not automatically enlarge the compute matrix.",
"result_cs": "Demo limit chrání výkon stroje.",
"result_en": "The demo limit protects machine resources.",
"what_cs": "Požadovaná jemnost diskrétního zadání.",
"what_en": "Requested fineness of the discrete task."
},
"icon": "▦",
"key": "mesh_points",
"kind": "scalar",
"label_cs": "Počet bodů síta",
"label_en": "Mesh point count",
"symbol": "Ng",
"units": [
{
"code": 1080,
"factor": 1.0,
"key": "count",
"label": "bodů",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 112,
"default_max": 1.0,
"default_min": 1e-21,
"domains": [
"nuclear",
"materials",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Mění časové rozlišení vstupního pole.",
"effect_en": "Changes temporal resolution of the input field.",
"reality_cs": "Je auditován jako vstup, nikoli skrytě odhadnut.",
"reality_en": "Audited as an explicit input, not silently estimated.",
"result_cs": "Neznamená automatický počet kroků CML_A.",
"result_en": "Does not automatically mean the number of EvO chronons.",
"what_cs": "Deklarovaný krok zadání.",
"what_en": "Declared step of the task."
},
"icon": "→",
"key": "integration_step",
"kind": "scalar",
"label_cs": "Velikost kroku",
"label_en": "Integration step",
"symbol": "Δt",
"units": [
{
"code": 1090,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
},
{
"code": 1091,
"factor": 1e-15,
"key": "fs",
"label": "fs",
"offset": 0.0
},
{
"code": 1092,
"factor": 1e-18,
"key": "as",
"label": "as",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 113,
"default_max": 1e-07,
"default_min": 1e-16,
"domains": [
"nuclear",
"particle",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Přímo vstupuje do exponentu CML_Ax.",
"effect_en": "Sets the spatial width of the energetic barrier in the approved field.",
"reality_cs": "Může se lišit od okamžité vzdálenosti jader.",
"reality_en": "It is an independent input quantity and may differ from the instantaneous nuclear distance.",
"result_cs": "Určuje exponenciální útlum průchodu.",
"result_en": "If a WKB projection is published, this width is shown explicitly among its parameters.",
"what_cs": "Efektivní šířka tunelované bariéry.",
"what_en": "Effective width of the barrier used in the declared tunnelling configuration."
},
"icon": "▮",
"key": "barrier_width",
"kind": "scalar",
"label_cs": "Šířka bariéry",
"label_en": "Barrier width",
"symbol": "a",
"units": [
{
"code": 1100,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 1101,
"factor": 1e-09,
"key": "nm",
"label": "nm",
"offset": 0.0
},
{
"code": 1102,
"factor": 1e-12,
"key": "pm",
"label": "pm",
"offset": 0.0
},
{
"code": 1103,
"factor": 1e-15,
"key": "fm",
"label": "fm",
"offset": 0.0
}
]
},
{
"canonical_unit": "factor",
"code": 114,
"default_max": 10.0,
"default_min": 0.0,
"domains": [
"nuclear",
"electromagnetism",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Zesiluje fotonovou složku efektivní energie.",
"effect_en": "Amplifies the photon contribution to effective energy.",
"reality_cs": "Musí být odvozen z konkrétního experimentálního režimu.",
"reality_en": "Must come from the declared experimental regime.",
"result_cs": "CML_Ax jej uvádí v auditu výsledku.",
"result_en": "Reported as part of the result audit when applicable.",
"what_cs": "Deklarovaný bezrozměrný faktor rezonance.",
"what_en": "Declared dimensionless resonance factor."
},
"icon": "≈",
"key": "resonance_gain",
"kind": "scalar",
"label_cs": "Rezonanční zesílení",
"label_en": "Resonance gain",
"symbol": "R",
"units": [
{
"code": 1110,
"factor": 1.0,
"key": "factor",
"label": "×",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 115,
"default_max": 256,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Určuje uzly a sousednosti mřížky.",
"effect_en": "Defines lattice nodes and adjacency.",
"reality_cs": "Je součástí topologie srovnávací úlohy.",
"reality_en": "Part of the topology of the comparison task.",
"result_cs": "Nemění postup CML_A.",
"result_en": "Does not prescribe the EvO method.",
"what_cs": "Počet řádků přesně zadané hexagonální mřížky.",
"what_en": "Number of rows in the explicitly declared hexagonal lattice."
},
"icon": "▦",
"key": "lattice_rows",
"kind": "scalar",
"label_cs": "Řádky hexagonální mřížky",
"label_en": "Hexagonal lattice rows",
"symbol": "Rhex",
"units": [
{
"code": 1120,
"factor": 1.0,
"key": "count",
"label": "řádků",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 116,
"default_max": 256,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Určuje uzly a sousednosti mřížky.",
"effect_en": "Defines lattice nodes and adjacency.",
"reality_cs": "Je součástí topologie srovnávací úlohy.",
"reality_en": "Part of the topology of the comparison task.",
"result_cs": "Nemění postup CML_A.",
"result_en": "Does not prescribe the EvO method.",
"what_cs": "Počet sloupců přesně zadané hexagonální mřížky.",
"what_en": "Number of columns in the explicitly declared hexagonal lattice."
},
"icon": "▥",
"key": "lattice_cols",
"kind": "scalar",
"label_cs": "Sloupce hexagonální mřížky",
"label_en": "Hexagonal lattice columns",
"symbol": "Chex",
"units": [
{
"code": 1121,
"factor": 1.0,
"key": "count",
"label": "sloupců",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 117,
"default_max": 16384,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Vymezuje počet provázaných spinových stavů.",
"effect_en": "Defines the number of coupled spin states.",
"reality_cs": "Je ověřitelný proti topologii.",
"reality_en": "Can be checked against the declared topology.",
"result_cs": "Je vstupem, ne odhadem AI.",
"result_en": "An input, not an AI estimate.",
"what_cs": "Počet datových qubitů zveřejněný pro danou mřížku.",
"what_en": "Number of data qubits declared for the lattice."
},
"icon": "q",
"key": "data_qubits",
"kind": "scalar",
"label_cs": "Počet datových qubitů",
"label_en": "Data qubits",
"symbol": "Nq",
"units": [
{
"code": 1122,
"factor": 1.0,
"key": "count",
"label": "qubitů",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 118,
"default_max": 6.283185307179586,
"default_min": -6.283185307179586,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Určuje sílu zveřejněné Isingovy vazby.",
"effect_en": "Sets the strength of the declared Ising coupling.",
"reality_cs": "Je číselnou vlastností každé vazby mřížky.",
"reality_en": "A numerical property of every declared lattice coupling.",
"result_cs": "Není instrukcí pro CML_A.",
"result_en": "Does not prescribe the EvO computation.",
"what_cs": "Úhel dvouqubitové interakce ZZ.",
"what_en": "Angle of the two-qubit ZZ interaction."
},
"icon": "∠",
"key": "zz_angle",
"kind": "scalar",
"label_cs": "Úhel interakce ZZ",
"label_en": "ZZ interaction angle",
"symbol": "φZZ",
"units": [
{
"code": 1123,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 119,
"default_max": 6.283185307179586,
"default_min": 0,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Rozlišuje jednotlivé běhy IBM úlohy.",
"effect_en": "Distinguishes individual quantum runs.",
"reality_cs": "Je pevnou podmínkou daného běhu.",
"reality_en": "A fixed condition of the declared run.",
"result_cs": "Není volen AI.",
"result_en": "Not chosen by AI.",
"what_cs": "Konkrétní parametr lokálního příčného pole.",
"what_en": "Parameter of the local transverse field."
},
"icon": "θ",
"key": "theta_angle",
"kind": "scalar",
"label_cs": "Úhel lokálního pole θ",
"label_en": "Local-field angle θ",
"symbol": "θ",
"units": [
{
"code": 1124,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 120,
"default_max": 100000,
"default_min": 0,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Identifikuje srovnávaný bod průběhu.",
"effect_en": "Identifies the compared point in the evolution.",
"reality_cs": "Popisuje referenční kvantový běh, ne vnitřní kroky CML_A.",
"reality_en": "Describes the reference quantum run, not EvO chronon count.",
"result_cs": "Je součástí auditního srovnání.",
"result_en": "Part of the auditable comparison.",
"what_cs": "Počet Trotterových vrstev referenční IBM realizace.",
"what_en": "Number of Trotter layers in the reference quantum realization."
},
"icon": "#",
"key": "trotter_depth",
"kind": "scalar",
"label_cs": "Trotterova hloubka",
"label_en": "Trotter depth",
"symbol": "dT",
"units": [
{
"code": 1125,
"factor": 1.0,
"key": "count",
"label": "vrstev",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 121,
"default_max": 1000000000,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Popisuje statistický rozpočet IBM.",
"effect_en": "Describes its statistical budget.",
"reality_cs": "Nevstupuje jako počet kroků CML_A.",
"reality_en": "Does not become the number of EvO chronons.",
"result_cs": "Umožní porovnat statistický a realizovaný výstup.",
"result_en": "Allows statistical and realized outputs to be compared.",
"what_cs": "Počet opakovaných měření referenčního kvantového běhu.",
"what_en": "Number of repeated measurements in the reference quantum run."
},
"icon": "◎",
"key": "measurement_shots",
"kind": "scalar",
"label_cs": "Počet měření IBM",
"label_en": "Measurement shots",
"symbol": "Ns",
"units": [
{
"code": 1126,
"factor": 1.0,
"key": "count",
"label": "shots",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 122,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 0.",
"what_en": "Unknown binary partition side for node 0."
},
"icon": "0",
"key": "cut_x0",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 0",
"label_en": "Node 0 partition bit",
"symbol": "x₀",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 123,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 1.",
"what_en": "Unknown binary partition side for node 1."
},
"icon": "1",
"key": "cut_x1",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 1",
"label_en": "Node 1 partition bit",
"symbol": "x₁",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 124,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 2.",
"what_en": "Unknown binary partition side for node 2."
},
"icon": "2",
"key": "cut_x2",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 2",
"label_en": "Node 2 partition bit",
"symbol": "x₂",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 125,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 3.",
"what_en": "Unknown binary partition side for node 3."
},
"icon": "3",
"key": "cut_x3",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 3",
"label_en": "Node 3 partition bit",
"symbol": "x₃",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 126,
"default_max": 5,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Je přímo ověřitelný dosazením čtyř výsledných bitů.",
"effect_en": "Directly verifiable from the four realized partition bits.",
"reality_cs": "Výsledný produkt validační úlohy.",
"reality_en": "Result quantity of the validation task.",
"result_cs": "IBM přesné optimum této instance je 4.",
"result_en": "The exact optimum of the declared reference instance is 4.",
"what_cs": "Počet hran spojujících opačné strany řezu.",
"what_en": "Number of graph edges crossing between opposite partitions."
},
"icon": "Σ",
"key": "cut_value",
"kind": "scalar",
"label_cs": "Hodnota řezu",
"label_en": "Cut value",
"symbol": "C",
"units": [
{
"code": 1131,
"factor": 1.0,
"key": "count",
"label": "hran",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 201,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 0",
"what_en": "Binary node 0"
},
"icon": "0/1",
"key": "cut5_x0",
"kind": "scalar",
"label_cs": "Binární uzel 0",
"label_en": "Binary node 0",
"symbol": "x0",
"units": [
{
"code": 2201,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 202,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 1",
"what_en": "Binary node 1"
},
"icon": "0/1",
"key": "cut5_x1",
"kind": "scalar",
"label_cs": "Binární uzel 1",
"label_en": "Binary node 1",
"symbol": "x1",
"units": [
{
"code": 2202,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 203,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 2",
"what_en": "Binary node 2"
},
"icon": "0/1",
"key": "cut5_x2",
"kind": "scalar",
"label_cs": "Binární uzel 2",
"label_en": "Binary node 2",
"symbol": "x2",
"units": [
{
"code": 2203,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 204,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 3",
"what_en": "Binary node 3"
},
"icon": "0/1",
"key": "cut5_x3",
"kind": "scalar",
"label_cs": "Binární uzel 3",
"label_en": "Binary node 3",
"symbol": "x3",
"units": [
{
"code": 2204,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 205,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 4",
"what_en": "Binary node 4"
},
"icon": "0/1",
"key": "cut5_x4",
"kind": "scalar",
"label_cs": "Binární uzel 4",
"label_en": "Binary node 4",
"symbol": "x4",
"units": [
{
"code": 2205,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "edge",
"code": 206,
"default_max": 6,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Hodnota řezu",
"what_en": "Cut value"
},
"icon": "C",
"key": "cut5_value",
"kind": "scalar",
"label_cs": "Hodnota řezu",
"label_en": "Cut value",
"symbol": "C",
"units": [
{
"code": 2206,
"factor": 1.0,
"key": "edge",
"label": "edge",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 210,
"default_max": 5,
"default_min": -5,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koeficient I",
"what_en": "I coefficient"
},
"icon": "I",
"key": "h2_cI",
"kind": "scalar",
"label_cs": "Koeficient I",
"label_en": "I coefficient",
"symbol": "cI",
"units": [
{
"code": 2210,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 211,
"default_max": 5,
"default_min": -5,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koeficient Z",
"what_en": "Z coefficient"
},
"icon": "Z",
"key": "h2_cZ",
"kind": "scalar",
"label_cs": "Koeficient Z",
"label_en": "Z coefficient",
"symbol": "cZ",
"units": [
{
"code": 2211,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 212,
"default_max": 5,
"default_min": -5,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koeficient X",
"what_en": "X coefficient"
},
"icon": "X",
"key": "h2_cX",
"kind": "scalar",
"label_cs": "Koeficient X",
"label_en": "X coefficient",
"symbol": "cX",
"units": [
{
"code": 2212,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 213,
"default_max": 5,
"default_min": 0,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Jaderná repulze",
"what_en": "Nuclear repulsion"
},
"icon": "+",
"key": "h2_nuclear_repulsion",
"kind": "scalar",
"label_cs": "Jaderná repulze",
"label_en": "Nuclear repulsion",
"symbol": "E_nn",
"units": [
{
"code": 2213,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 214,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Variační úhel",
"what_en": "Variational angle"
},
"icon": "θ",
"key": "h2_theta",
"kind": "scalar",
"label_cs": "Variační úhel",
"label_en": "Variational angle",
"symbol": "θ",
"units": [
{
"code": 2214,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 215,
"default_max": 1,
"default_min": -3,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Celková energie",
"what_en": "Total energy"
},
"icon": "E",
"key": "h2_energy",
"kind": "scalar",
"label_cs": "Celková energie",
"label_en": "Total energy",
"symbol": "E",
"units": [
{
"code": 2215,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "fraction",
"code": 220,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Vlastní fáze",
"what_en": "Eigenphase"
},
"icon": "φ",
"key": "qpe_phase",
"kind": "scalar",
"label_cs": "Vlastní fáze",
"label_en": "Eigenphase",
"symbol": "φ",
"units": [
{
"code": 2220,
"factor": 1.0,
"key": "fraction",
"label": "fraction",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 221,
"default_max": 52,
"default_min": 1,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Požadovaná bitová přesnost",
"what_en": "Requested bit precision"
},
"icon": "m",
"key": "qpe_bits",
"kind": "scalar",
"label_cs": "Požadovaná bitová přesnost",
"label_en": "Requested bit precision",
"symbol": "m",
"units": [
{
"code": 2221,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 222,
"default_max": 52,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Vyřešené bity",
"what_en": "Resolved bits"
},
"icon": "k",
"key": "qpe_bits_resolved",
"kind": "scalar",
"label_cs": "Vyřešené bity",
"label_en": "Resolved bits",
"symbol": "k",
"units": [
{
"code": 2222,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "code",
"code": 223,
"default_max": 4503599627370495,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární prefix",
"what_en": "Binary prefix"
},
"icon": "p",
"key": "qpe_prefix",
"kind": "scalar",
"label_cs": "Binární prefix",
"label_en": "Binary prefix",
"symbol": "p",
"units": [
{
"code": 2223,
"factor": 1.0,
"key": "code",
"label": "code",
"offset": 0.0
}
]
},
{
"canonical_unit": "fraction",
"code": 224,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Odhad fáze",
"what_en": "Phase estimate"
},
"icon": "φ̂",
"key": "qpe_phase_estimate",
"kind": "scalar",
"label_cs": "Odhad fáze",
"label_en": "Phase estimate",
"symbol": "φ̂",
"units": [
{
"code": 2224,
"factor": 1.0,
"key": "fraction",
"label": "fraction",
"offset": 0.0
}
]
},
{
"canonical_unit": "fraction",
"code": 225,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Chyba fáze",
"what_en": "Phase error"
},
"icon": "ε",
"key": "qpe_error",
"kind": "scalar",
"label_cs": "Chyba fáze",
"label_en": "Phase error",
"symbol": "ε",
"units": [
{
"code": 2225,
"factor": 1.0,
"key": "fraction",
"label": "fraction",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 230,
"default_max": 100,
"default_min": 0,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Čas",
"what_en": "Time"
},
"icon": "t",
"key": "qt_time",
"kind": "scalar",
"label_cs": "Čas",
"label_en": "Time",
"symbol": "t",
"units": [
{
"code": 2230,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 231,
"default_max": 100,
"default_min": 0,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koncový čas",
"what_en": "Final time"
},
"icon": "t_f",
"key": "qt_final_time",
"kind": "scalar",
"label_cs": "Koncový čas",
"label_en": "Final time",
"symbol": "t_f",
"units": [
{
"code": 2231,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad/s",
"code": 232,
"default_max": 1000000.0,
"default_min": 0,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Úhlová frekvence",
"what_en": "Angular frequency"
},
"icon": "ω",
"key": "qt_omega",
"kind": "scalar",
"label_cs": "Úhlová frekvence",
"label_en": "Angular frequency",
"symbol": "ω",
"units": [
{
"code": 2232,
"factor": 1.0,
"key": "rad/s",
"label": "rad/s",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 233,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Pozorovatelná",
"what_en": "Observable"
},
"icon": "A",
"key": "qt_observable",
"kind": "scalar",
"label_cs": "Pozorovatelná",
"label_en": "Observable",
"symbol": "⟨A⟩",
"units": [
{
"code": 2233,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 240,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E00",
"what_en": "Correlation E00"
},
"icon": "E",
"key": "chsh_e00",
"kind": "scalar",
"label_cs": "Korelace E00",
"label_en": "Correlation E00",
"symbol": "E00",
"units": [
{
"code": 2240,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 241,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E01",
"what_en": "Correlation E01"
},
"icon": "E",
"key": "chsh_e01",
"kind": "scalar",
"label_cs": "Korelace E01",
"label_en": "Correlation E01",
"symbol": "E01",
"units": [
{
"code": 2241,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 242,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E10",
"what_en": "Correlation E10"
},
"icon": "E",
"key": "chsh_e10",
"kind": "scalar",
"label_cs": "Korelace E10",
"label_en": "Correlation E10",
"symbol": "E10",
"units": [
{
"code": 2242,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 243,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E11",
"what_en": "Correlation E11"
},
"icon": "E",
"key": "chsh_e11",
"kind": "scalar",
"label_cs": "Korelace E11",
"label_en": "Correlation E11",
"symbol": "E11",
"units": [
{
"code": 2243,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 244,
"default_max": 2.8284271247461903,
"default_min": -2.8284271247461903,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "CHSH parametr",
"what_en": "CHSH parameter"
},
"icon": "S",
"key": "chsh_s",
"kind": "scalar",
"label_cs": "CHSH parametr",
"label_en": "CHSH parameter",
"symbol": "S",
"units": [
{
"code": 2244,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 245,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient YZ",
"what_en": "YZ coefficient"
},
"icon": "cYZ",
"key": "vqe2_c_yz",
"kind": "scalar",
"label_cs": "Koeficient YZ",
"label_en": "YZ coefficient",
"symbol": "cYZ",
"units": [
{
"code": 3245,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 246,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient ZI",
"what_en": "ZI coefficient"
},
"icon": "cZI",
"key": "vqe2_c_zi",
"kind": "scalar",
"label_cs": "Koeficient ZI",
"label_en": "ZI coefficient",
"symbol": "cZI",
"units": [
{
"code": 3246,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 247,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient ZZ",
"what_en": "ZZ coefficient"
},
"icon": "cZZ",
"key": "vqe2_c_zz",
"kind": "scalar",
"label_cs": "Koeficient ZZ",
"label_en": "ZZ coefficient",
"symbol": "cZZ",
"units": [
{
"code": 3247,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 248,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient XX",
"what_en": "XX coefficient"
},
"icon": "cXX",
"key": "vqe2_c_xx",
"kind": "scalar",
"label_cs": "Koeficient XX",
"label_en": "XX coefficient",
"symbol": "cXX",
"units": [
{
"code": 3248,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 249,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 0",
"what_en": "Variational angle 0"
},
"icon": "θ0",
"key": "vqe2_theta0",
"kind": "scalar",
"label_cs": "Variační úhel 0",
"label_en": "Variational angle 0",
"symbol": "θ0",
"units": [
{
"code": 3249,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 250,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 1",
"what_en": "Variational angle 1"
},
"icon": "θ1",
"key": "vqe2_theta1",
"kind": "scalar",
"label_cs": "Variační úhel 1",
"label_en": "Variational angle 1",
"symbol": "θ1",
"units": [
{
"code": 3250,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 251,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 2",
"what_en": "Variational angle 2"
},
"icon": "θ2",
"key": "vqe2_theta2",
"kind": "scalar",
"label_cs": "Variační úhel 2",
"label_en": "Variational angle 2",
"symbol": "θ2",
"units": [
{
"code": 3251,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 252,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 3",
"what_en": "Variational angle 3"
},
"icon": "θ3",
"key": "vqe2_theta3",
"kind": "scalar",
"label_cs": "Variační úhel 3",
"label_en": "Variational angle 3",
"symbol": "θ3",
"units": [
{
"code": 3252,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 253,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 4",
"what_en": "Variational angle 4"
},
"icon": "θ4",
"key": "vqe2_theta4",
"kind": "scalar",
"label_cs": "Variační úhel 4",
"label_en": "Variational angle 4",
"symbol": "θ4",
"units": [
{
"code": 3253,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 254,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 5",
"what_en": "Variational angle 5"
},
"icon": "θ5",
"key": "vqe2_theta5",
"kind": "scalar",
"label_cs": "Variační úhel 5",
"label_en": "Variational angle 5",
"symbol": "θ5",
"units": [
{
"code": 3254,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 255,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 6",
"what_en": "Variational angle 6"
},
"icon": "θ6",
"key": "vqe2_theta6",
"kind": "scalar",
"label_cs": "Variační úhel 6",
"label_en": "Variational angle 6",
"symbol": "θ6",
"units": [
{
"code": 3255,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 256,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 7",
"what_en": "Variational angle 7"
},
"icon": "θ7",
"key": "vqe2_theta7",
"kind": "scalar",
"label_cs": "Variační úhel 7",
"label_en": "Variational angle 7",
"symbol": "θ7",
"units": [
{
"code": 3256,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 257,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Energie Hamiltoniánu",
"what_en": "Hamiltonian energy"
},
"icon": "E",
"key": "vqe2_energy",
"kind": "scalar",
"label_cs": "Energie Hamiltoniánu",
"label_en": "Hamiltonian energy",
"symbol": "E",
"units": [
{
"code": 3257,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 258,
"default_max": 16384,
"default_min": 64,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Počet zkoušených stavů",
"what_en": "Trial states evaluated"
},
"icon": "N",
"key": "vqe2_candidate_evals",
"kind": "scalar",
"label_cs": "Počet zkoušených stavů",
"label_en": "Trial states evaluated",
"symbol": "N",
"units": [
{
"code": 3258,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 259,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J0",
"what_en": "XXZ coupling J0"
},
"icon": "J0",
"key": "xxz_j0",
"kind": "scalar",
"label_cs": "XXZ vazba J0",
"label_en": "XXZ coupling J0",
"symbol": "J0",
"units": [
{
"code": 3259,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 260,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J1",
"what_en": "XXZ coupling J1"
},
"icon": "J1",
"key": "xxz_j1",
"kind": "scalar",
"label_cs": "XXZ vazba J1",
"label_en": "XXZ coupling J1",
"symbol": "J1",
"units": [
{
"code": 3260,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 261,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J2",
"what_en": "XXZ coupling J2"
},
"icon": "J2",
"key": "xxz_j2",
"kind": "scalar",
"label_cs": "XXZ vazba J2",
"label_en": "XXZ coupling J2",
"symbol": "J2",
"units": [
{
"code": 3261,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 262,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J3",
"what_en": "XXZ coupling J3"
},
"icon": "J3",
"key": "xxz_j3",
"kind": "scalar",
"label_cs": "XXZ vazba J3",
"label_en": "XXZ coupling J3",
"symbol": "J3",
"units": [
{
"code": 3262,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 263,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J4",
"what_en": "XXZ coupling J4"
},
"icon": "J4",
"key": "xxz_j4",
"kind": "scalar",
"label_cs": "XXZ vazba J4",
"label_en": "XXZ coupling J4",
"symbol": "J4",
"units": [
{
"code": 3263,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 264,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J5",
"what_en": "XXZ coupling J5"
},
"icon": "J5",
"key": "xxz_j5",
"kind": "scalar",
"label_cs": "XXZ vazba J5",
"label_en": "XXZ coupling J5",
"symbol": "J5",
"units": [
{
"code": 3264,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 265,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J6",
"what_en": "XXZ coupling J6"
},
"icon": "J6",
"key": "xxz_j6",
"kind": "scalar",
"label_cs": "XXZ vazba J6",
"label_en": "XXZ coupling J6",
"symbol": "J6",
"units": [
{
"code": 3265,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 266,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J7",
"what_en": "XXZ coupling J7"
},
"icon": "J7",
"key": "xxz_j7",
"kind": "scalar",
"label_cs": "XXZ vazba J7",
"label_en": "XXZ coupling J7",
"symbol": "J7",
"units": [
{
"code": 3266,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 267,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J8",
"what_en": "XXZ coupling J8"
},
"icon": "J8",
"key": "xxz_j8",
"kind": "scalar",
"label_cs": "XXZ vazba J8",
"label_en": "XXZ coupling J8",
"symbol": "J8",
"units": [
{
"code": 3267,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "tau",
"code": 268,
"default_max": 10,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koncový evoluční čas",
"what_en": "Final evolution time"
},
"icon": "t_f",
"key": "xxz_final_time",
"kind": "scalar",
"label_cs": "Koncový evoluční čas",
"label_en": "Final evolution time",
"symbol": "t_f",
"units": [
{
"code": 3268,
"factor": 1.0,
"key": "tau",
"label": "tau",
"offset": 0.0
}
]
},
{
"canonical_unit": "tau",
"code": 269,
"default_max": 10,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Realizovaný evoluční čas",
"what_en": "Realized evolution time"
},
"icon": "t",
"key": "xxz_time",
"kind": "scalar",
"label_cs": "Realizovaný evoluční čas",
"label_en": "Realized evolution time",
"symbol": "t",
"units": [
{
"code": 3269,
"factor": 1.0,
"key": "tau",
"label": "tau",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 270,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Střední ZZ korelace",
"what_en": "Middle-bond ZZ correlation"
},
"icon": "⟨ZZ⟩",
"key": "xxz_zz_mid",
"kind": "scalar",
"label_cs": "Střední ZZ korelace",
"label_en": "Middle-bond ZZ correlation",
"symbol": "⟨ZZ⟩",
"units": [
{
"code": 3270,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 271,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Průměr ZZ sudých vazeb",
"what_en": "Even-bond ZZ mean"
},
"icon": "ZZₑ",
"key": "xxz_even_zz_mean",
"kind": "scalar",
"label_cs": "Průměr ZZ sudých vazeb",
"label_en": "Even-bond ZZ mean",
"symbol": "ZZₑ",
"units": [
{
"code": 3271,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 272,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Průměr ZZ lichých vazeb",
"what_en": "Odd-bond ZZ mean"
},
"icon": "ZZₒ",
"key": "xxz_odd_zz_mean",
"kind": "scalar",
"label_cs": "Průměr ZZ lichých vazeb",
"label_en": "Odd-bond ZZ mean",
"symbol": "ZZₒ",
"units": [
{
"code": 3272,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 273,
"default_max": 1.1,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Norma stavu",
"what_en": "State norm"
},
"icon": "||ψ||²",
"key": "xxz_state_norm",
"kind": "scalar",
"label_cs": "Norma stavu",
"label_en": "State norm",
"symbol": "||ψ||²",
"units": [
{
"code": 3273,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 274,
"default_max": 80,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Kód realizované trajektorie",
"what_en": "Realized trajectory code"
},
"icon": "Γ",
"key": "xxz_path_code",
"kind": "scalar",
"label_cs": "Kód realizované trajektorie",
"label_en": "Realized trajectory code",
"symbol": "Γ",
"units": [
{
"code": 3274,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 275,
"default_max": 1000,
"default_min": 1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Počet kandidátních trajektorií",
"what_en": "Candidate trajectories evaluated"
},
"icon": "NΓ",
"key": "xxz_candidate_evals",
"kind": "scalar",
"label_cs": "Počet kandidátních trajektorií",
"label_en": "Candidate trajectories evaluated",
"symbol": "NΓ",
"units": [
{
"code": 3275,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 300,
"default_max": 156,
"default_min": 156,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Node count",
"what_en": "Node count"
},
"icon": "N",
"key": "mc156_n",
"kind": "scalar",
"label_cs": "Node count",
"label_en": "Node count",
"symbol": "N",
"units": [
{
"code": 4300,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 301,
"default_max": 3,
"default_min": 3,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Graph degree",
"what_en": "Graph degree"
},
"icon": "d",
"key": "mc156_degree",
"kind": "scalar",
"label_cs": "Graph degree",
"label_en": "Graph degree",
"symbol": "d",
"units": [
{
"code": 4301,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 302,
"default_max": 8,
"default_min": 8,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Graph seed",
"what_en": "Graph seed"
},
"icon": "sG",
"key": "mc156_graph_seed",
"kind": "scalar",
"label_cs": "Graph seed",
"label_en": "Graph seed",
"symbol": "sG",
"units": [
{
"code": 4302,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 303,
"default_max": 2147483647,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Search seed",
"what_en": "Search seed"
},
"icon": "sE",
"key": "mc156_search_seed",
"kind": "scalar",
"label_cs": "Search seed",
"label_en": "Search seed",
"symbol": "sE",
"units": [
{
"code": 4303,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 304,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 0",
"what_en": "Packed assignment byte 0"
},
"icon": "B0",
"key": "mc156_b00",
"kind": "scalar",
"label_cs": "Packed assignment byte 0",
"label_en": "Packed assignment byte 0",
"symbol": "B0",
"units": [
{
"code": 4304,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 305,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 1",
"what_en": "Packed assignment byte 1"
},
"icon": "B1",
"key": "mc156_b01",
"kind": "scalar",
"label_cs": "Packed assignment byte 1",
"label_en": "Packed assignment byte 1",
"symbol": "B1",
"units": [
{
"code": 4305,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 306,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 2",
"what_en": "Packed assignment byte 2"
},
"icon": "B2",
"key": "mc156_b02",
"kind": "scalar",
"label_cs": "Packed assignment byte 2",
"label_en": "Packed assignment byte 2",
"symbol": "B2",
"units": [
{
"code": 4306,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 307,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 3",
"what_en": "Packed assignment byte 3"
},
"icon": "B3",
"key": "mc156_b03",
"kind": "scalar",
"label_cs": "Packed assignment byte 3",
"label_en": "Packed assignment byte 3",
"symbol": "B3",
"units": [
{
"code": 4307,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 308,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 4",
"what_en": "Packed assignment byte 4"
},
"icon": "B4",
"key": "mc156_b04",
"kind": "scalar",
"label_cs": "Packed assignment byte 4",
"label_en": "Packed assignment byte 4",
"symbol": "B4",
"units": [
{
"code": 4308,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 309,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 5",
"what_en": "Packed assignment byte 5"
},
"icon": "B5",
"key": "mc156_b05",
"kind": "scalar",
"label_cs": "Packed assignment byte 5",
"label_en": "Packed assignment byte 5",
"symbol": "B5",
"units": [
{
"code": 4309,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 310,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 6",
"what_en": "Packed assignment byte 6"
},
"icon": "B6",
"key": "mc156_b06",
"kind": "scalar",
"label_cs": "Packed assignment byte 6",
"label_en": "Packed assignment byte 6",
"symbol": "B6",
"units": [
{
"code": 4310,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 311,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 7",
"what_en": "Packed assignment byte 7"
},
"icon": "B7",
"key": "mc156_b07",
"kind": "scalar",
"label_cs": "Packed assignment byte 7",
"label_en": "Packed assignment byte 7",
"symbol": "B7",
"units": [
{
"code": 4311,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 312,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 8",
"what_en": "Packed assignment byte 8"
},
"icon": "B8",
"key": "mc156_b08",
"kind": "scalar",
"label_cs": "Packed assignment byte 8",
"label_en": "Packed assignment byte 8",
"symbol": "B8",
"units": [
{
"code": 4312,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 313,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 9",
"what_en": "Packed assignment byte 9"
},
"icon": "B9",
"key": "mc156_b09",
"kind": "scalar",
"label_cs": "Packed assignment byte 9",
"label_en": "Packed assignment byte 9",
"symbol": "B9",
"units": [
{
"code": 4313,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 314,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 10",
"what_en": "Packed assignment byte 10"
},
"icon": "B10",
"key": "mc156_b10",
"kind": "scalar",
"label_cs": "Packed assignment byte 10",
"label_en": "Packed assignment byte 10",
"symbol": "B10",
"units": [
{
"code": 4314,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 315,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 11",
"what_en": "Packed assignment byte 11"
},
"icon": "B11",
"key": "mc156_b11",
"kind": "scalar",
"label_cs": "Packed assignment byte 11",
"label_en": "Packed assignment byte 11",
"symbol": "B11",
"units": [
{
"code": 4315,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 316,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 12",
"what_en": "Packed assignment byte 12"
},
"icon": "B12",
"key": "mc156_b12",
"kind": "scalar",
"label_cs": "Packed assignment byte 12",
"label_en": "Packed assignment byte 12",
"symbol": "B12",
"units": [
{
"code": 4316,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 317,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 13",
"what_en": "Packed assignment byte 13"
},
"icon": "B13",
"key": "mc156_b13",
"kind": "scalar",
"label_cs": "Packed assignment byte 13",
"label_en": "Packed assignment byte 13",
"symbol": "B13",
"units": [
{
"code": 4317,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 318,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 14",
"what_en": "Packed assignment byte 14"
},
"icon": "B14",
"key": "mc156_b14",
"kind": "scalar",
"label_cs": "Packed assignment byte 14",
"label_en": "Packed assignment byte 14",
"symbol": "B14",
"units": [
{
"code": 4318,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 319,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 15",
"what_en": "Packed assignment byte 15"
},
"icon": "B15",
"key": "mc156_b15",
"kind": "scalar",
"label_cs": "Packed assignment byte 15",
"label_en": "Packed assignment byte 15",
"symbol": "B15",
"units": [
{
"code": 4319,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 320,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 16",
"what_en": "Packed assignment byte 16"
},
"icon": "B16",
"key": "mc156_b16",
"kind": "scalar",
"label_cs": "Packed assignment byte 16",
"label_en": "Packed assignment byte 16",
"symbol": "B16",
"units": [
{
"code": 4320,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 321,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 17",
"what_en": "Packed assignment byte 17"
},
"icon": "B17",
"key": "mc156_b17",
"kind": "scalar",
"label_cs": "Packed assignment byte 17",
"label_en": "Packed assignment byte 17",
"symbol": "B17",
"units": [
{
"code": 4321,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 322,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 18",
"what_en": "Packed assignment byte 18"
},
"icon": "B18",
"key": "mc156_b18",
"kind": "scalar",
"label_cs": "Packed assignment byte 18",
"label_en": "Packed assignment byte 18",
"symbol": "B18",
"units": [
{
"code": 4322,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 323,
"default_max": 255,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Packed assignment byte 19",
"what_en": "Packed assignment byte 19"
},
"icon": "B19",
"key": "mc156_b19",
"kind": "scalar",
"label_cs": "Packed assignment byte 19",
"label_en": "Packed assignment byte 19",
"symbol": "B19",
"units": [
{
"code": 4323,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 324,
"default_max": 234,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Cut value",
"what_en": "Cut value"
},
"icon": "C",
"key": "mc156_cut",
"kind": "scalar",
"label_cs": "Cut value",
"label_en": "Cut value",
"symbol": "C",
"units": [
{
"code": 4324,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 325,
"default_max": 1000,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Evolution search step",
"what_en": "Evolution search step"
},
"icon": "k",
"key": "mc156_step",
"kind": "scalar",
"label_cs": "Evolution search step",
"label_en": "Evolution search step",
"symbol": "k",
"units": [
{
"code": 4325,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 340,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 0",
"what_en": "32-bit assignment block 0"
},
"icon": "W0",
"key": "mc156_w00",
"kind": "scalar",
"label_cs": "Packed assignment word 0",
"label_en": "Packed assignment word 0",
"symbol": "W0",
"units": [
{
"code": 4340,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 341,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 1",
"what_en": "32-bit assignment block 1"
},
"icon": "W1",
"key": "mc156_w01",
"kind": "scalar",
"label_cs": "Packed assignment word 1",
"label_en": "Packed assignment word 1",
"symbol": "W1",
"units": [
{
"code": 4341,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 342,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 2",
"what_en": "32-bit assignment block 2"
},
"icon": "W2",
"key": "mc156_w02",
"kind": "scalar",
"label_cs": "Packed assignment word 2",
"label_en": "Packed assignment word 2",
"symbol": "W2",
"units": [
{
"code": 4342,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 343,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 3",
"what_en": "32-bit assignment block 3"
},
"icon": "W3",
"key": "mc156_w03",
"kind": "scalar",
"label_cs": "Packed assignment word 3",
"label_en": "Packed assignment word 3",
"symbol": "W3",
"units": [
{
"code": 4343,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 344,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 4",
"what_en": "32-bit assignment block 4"
},
"icon": "W4",
"key": "mc156_w04",
"kind": "scalar",
"label_cs": "Packed assignment word 4",
"label_en": "Packed assignment word 4",
"symbol": "W4",
"units": [
{
"code": 4344,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
}
],
"vector_dimension": 64
},
"knowledge_map": {
"endpoint": "/api/v3/knowledge-map",
"purpose": "Public routing map for selecting a PartnerProf task and explaining its limits before preparation."
},
"manual_form_parity": "The same catalog keys, states, units, relations, operators and question modes are used by the PartnerProf manual form and composer API.",
"ok": true,
"prepare_then_run": {
"async_readback": {
"progress": "/api/v3/runs/{run_id}/progress",
"result": "/api/v3/runs/{run_id}/result",
"rule": "Whenever a run_id is returned, immediately request status and progress and render available real samples. Retrieve result after the terminal state. Never infer completion from CPU load, queue depth, aggregate health, or an estimated percentage.",
"status": "/api/v3/runs/{run_id}/status",
"visualization_rule": "Plot only returned progress samples. Use chronon/event order and elapsed time for field-terminal runs; never replace null progress_fraction with an estimated 0..100 percent."
},
"current_contract": "Prepare returns a one-hour unguessable prepared_task_id, accepted counts and approval hashes. Both run routes accept only that ID plus confirm_execution: true and cannot alter the approved field. The async route returns a durable run_id immediately.",
"prepare": "/api/v3/tasks/prepare",
"run": "/api/v3/tasks/run",
"start_async": "/api/v3/tasks/start"
},
"purpose": "Specify one computational reality, one request, and optional external comparison without guessing field names or result semantics.",
"rcs_vocabulary": {
"float64_transport": "The server encodes header, circuit identity words, ordered gate blocks and optional bit symbols into a contiguous numpy.float64 field. The caller never supplies a vector.",
"gate": {
"accepted_aliases": {
"CNOT": "CX",
"CPHASE": "CP",
"FREDKIN": "CSWAP",
"ID": "I",
"P": "PHASE",
"TOFFOLI": "CCX"
},
"arity": {
"five_qubit": [
"C4X"
],
"four_qubit": [
"C3SX",
"C3X",
"RC3X"
],
"one_qubit": [
"H",
"H_POW",
"I",
"PHASE",
"PHASED_X",
"PHASED_XZ",
"R",
"RX",
"RY",
"RZ",
"S",
"SDG",
"SX",
"SXDG",
"T",
"TDG",
"U",
"U1",
"U2",
"U3",
"X",
"X90",
"X_POW",
"Y",
"Y90",
"Y_POW",
"Z",
"Z_POW"
],
"three_qubit": [
"CCX",
"CCX_POW",
"CCZ",
"CCZ_POW",
"CSWAP",
"RCCX"
],
"two_qubit": [
"CH",
"CP",
"CRX",
"CRY",
"CRZ",
"CS",
"CSDG",
"CSX",
"CU",
"CU1",
"CU3",
"CX",
"CX_POW",
"CY",
"CZ",
"CZ_POW",
"DCX",
"ECR",
"FSIM",
"ISWAP",
"ISWAP_POW",
"RXX",
"RYY",
"RZX",
"RZZ",
"SWAP",
"SWAP_POW",
"XX_MINUS_YY",
"XX_PLUS_YY",
"XX_POW",
"YY_POW",
"ZZ_POW"
],
"zero_qubit": [
"GPHASE"
]
},
"gate_enum": [
"C3SX",
"C3X",
"C4X",
"CCX",
"CCX_POW",
"CCZ",
"CCZ_POW",
"CH",
"CP",
"CRX",
"CRY",
"CRZ",
"CS",
"CSDG",
"CSWAP",
"CSX",
"CU",
"CU1",
"CU3",
"CX",
"CX_POW",
"CY",
"CZ",
"CZ_POW",
"DCX",
"ECR",
"FSIM",
"GPHASE",
"H",
"H_POW",
"I",
"ISWAP",
"ISWAP_POW",
"PHASE",
"PHASED_X",
"PHASED_XZ",
"R",
"RC3X",
"RCCX",
"RX",
"RXX",
"RY",
"RYY",
"RZ",
"RZX",
"RZZ",
"S",
"SDG",
"SWAP",
"SWAP_POW",
"SX",
"SXDG",
"T",
"TDG",
"U",
"U1",
"U2",
"U3",
"X",
"X90",
"XX_MINUS_YY",
"XX_PLUS_YY",
"XX_POW",
"X_POW",
"Y",
"Y90",
"YY_POW",
"Y_POW",
"Z",
"ZZ_POW",
"Z_POW"
],
"layer_rule": "Every layer from 0 through circuit_depth-1 must be represented; use I for an identity operation. A qubit may occur in at most one gate per layer.",
"optional": [
"parameters"
],
"parameter_count": {
"CCX_POW": 2,
"CCZ_POW": 2,
"CP": 1,
"CRX": 1,
"CRY": 1,
"CRZ": 1,
"CU": 4,
"CU1": 1,
"CU3": 3,
"CX_POW": 2,
"CZ_POW": 2,
"FSIM": 2,
"GPHASE": 1,
"H_POW": 2,
"ISWAP_POW": 2,
"PHASE": 1,
"PHASED_X": 2,
"PHASED_XZ": 3,
"R": 2,
"RX": 1,
"RXX": 1,
"RY": 1,
"RYY": 1,
"RZ": 1,
"RZX": 1,
"RZZ": 1,
"SWAP_POW": 2,
"U": 3,
"U1": 1,
"U2": 2,
"U3": 3,
"XX_MINUS_YY": 2,
"XX_PLUS_YY": 2,
"XX_POW": 2,
"X_POW": 2,
"YY_POW": 2,
"Y_POW": 2,
"ZZ_POW": 2,
"Z_POW": 2,
"all_unlisted_gates": 0
},
"parameter_semantics": {
"CCX_POW": [
"exponent_half_turns",
"global_shift"
],
"CCZ_POW": [
"exponent_half_turns",
"global_shift"
],
"CP": [
"lambda_rad"
],
"CRX": [
"theta_rad"
],
"CRY": [
"theta_rad"
],
"CRZ": [
"theta_rad"
],
"CU": [
"theta_rad",
"phi_rad",
"lambda_rad",
"gamma_rad"
],
"CU1": [
"lambda_rad"
],
"CU3": [
"theta_rad",
"phi_rad",
"lambda_rad"
],
"CX_POW": [
"exponent_half_turns",
"global_shift"
],
"CZ_POW": [
"exponent_half_turns",
"global_shift"
],
"FSIM": [
"theta_rad",
"phi_rad"
],
"GPHASE": [
"gamma_rad"
],
"H_POW": [
"exponent_half_turns",
"global_shift"
],
"ISWAP_POW": [
"exponent_half_turns",
"global_shift"
],
"PHASE": [
"lambda_rad"
],
"PHASED_X": [
"phase_exponent_p_half_turns",
"exponent_t_half_turns"
],
"PHASED_XZ": [
"x_exponent_half_turns",
"z_exponent_half_turns",
"axis_phase_exponent_half_turns"
],
"R": [
"theta_rad",
"phi_rad"
],
"RX": [
"theta_rad"
],
"RXX": [
"theta_rad"
],
"RY": [
"theta_rad"
],
"RYY": [
"theta_rad"
],
"RZ": [
"theta_rad"
],
"RZX": [
"theta_rad"
],
"RZZ": [
"theta_rad"
],
"SWAP_POW": [
"exponent_half_turns",
"global_shift"
],
"U": [
"theta_rad",
"phi_rad",
"lambda_rad"
],
"U1": [
"lambda_rad"
],
"U2": [
"phi_rad",
"lambda_rad"
],
"U3": [
"theta_rad",
"phi_rad",
"lambda_rad"
],
"XX_MINUS_YY": [
"theta_rad",
"beta_rad"
],
"XX_PLUS_YY": [
"theta_rad",
"beta_rad"
],
"XX_POW": [
"exponent_half_turns",
"global_shift"
],
"X_POW": [
"exponent_half_turns",
"global_shift"
],
"YY_POW": [
"exponent_half_turns",
"global_shift"
],
"Y_POW": [
"exponent_half_turns",
"global_shift"
],
"ZZ_POW": [
"exponent_half_turns",
"global_shift"
],
"Z_POW": [
"exponent_half_turns",
"global_shift"
]
},
"required": [
"layer",
"gate",
"qubits"
]
},
"identity": "The server canonicalizes the ordered gate sequence and computes circuit_sha3_512. A supplied hash must match exactly.",
"normative_sources": {
"cirq_gate_semantics": "https://quantumai.google/cirq/build/gates",
"openqasm_standard_library": "https://openqasm.com/language/standard_library.html",
"phased_x": "https://quantumai.google/reference/python/cirq/PhasedXPowGate",
"qiskit_circuit_library": "https://quantum.cloud.ibm.com/docs/en/api/qiskit/circuit_library"
},
"operation_boundary": {
"generalized_operations": "Arbitrary unitary matrices, channels, variadic controls and opaque custom gates require prior explicit decomposition into this canonical vocabulary; PartnerProf never guesses a decomposition.",
"included": "Canonical fixed-width unitary and global-phase operations with 0..5 qubits and 0..4 finite identity parameters.",
"measurement": "Represent the declared sampled/target/realized computational-basis value with output_bitstring; MEASURE is not silently treated as a unitary gate.",
"reset_and_directives": "RESET, BARRIER, DELAY, pulse/calibration instructions and classical control are not gate_sequence entries because their semantics are not unitary circuit identity."
},
"optional": [
"circuit_sha3_512",
"output_bitstring"
],
"output_bitstring": {
"shape": {
"role": [
"observed",
"target",
"realized_history"
],
"value": "exactly qubit_count characters from 0 or 1"
}
},
"principles": {
"concrete_circuit": "A random seed or ensemble name is not a circuit. Submit the concrete ordered gate realization that the seed produced.",
"global_phase": "GPHASE is a zero-qubit operation with gamma_rad and remains part of exact circuit identity.",
"hash_scope": "circuit_sha3_512 binds schema, circuit_id, qubit_count, circuit_depth and canonical gate_sequence. The separately role-labelled output_bitstring is bound by the complete input certificate, not used to predict a result.",
"initial_state": "The RCS/1.0 initial state is the computational-basis all-zero state. A different preparation must be expressed by canonical gates at the start of gate_sequence.",
"layers": "A layer is a declared simultaneous moment. Qubits cannot overlap within it and every depth index must be represented.",
"ordered_qubits": "Qubit argument order is part of gate identity; controls and targets are never sorted or inferred.",
"parameters": "Parameter order and units are gate-specific and authoritative in gate.parameter_semantics. Finite values are preserved as float64 and never reduced modulo a period.",
"phased_x_convention": "PHASED_X parameters are [p,t] in half-turns and mean Z^-p X^t Z^p with global_shift fixed to 0.",
"power_gate_convention": "Each *_POW gate requires [exponent_half_turns, global_shift], preserving the exact Cirq EigenGate phase convention rather than only equivalence up to global phase."
},
"problem_family": "random_circuit_sampling",
"relative_value_boundary": "Gate parameters are accepted only for parameterized gates and only because they define exact gate identity; descriptive metrics do not enter the field.",
"required": [
"circuit_id",
"qubit_count",
"circuit_depth",
"gate_sequence"
],
"schema": "PartnerProf-RCS/1.0",
"source_import": {
"accepted_cirq_operations": [
"PhasedXPowGate(phase_exponent, exponent)",
"X**exponent",
"Y**exponent",
"Rz(theta_rad)",
"FSimGate(theta_rad, phi_rad)"
],
"approved_hosts": [
"raw.githubusercontent.com"
],
"format": "UTF-8 Cirq Python source with literal QUBIT_ORDER and CIRCUIT moments",
"maximum_source_bytes": 393216,
"prepare": "/api/v3/rcs-sources/prepare",
"rejection_rule": "Any other statement, expression, qubit type or operation rejects the complete import; no partial circuit and no guessed decomposition is prepared.",
"required": [
"source_url",
"expected_sha3_512"
],
"result": "Returns source and circuit hashes, exact counts, automatic float64 dimension, input certificate and prepared_task_id. It never starts computation.",
"security": "Direct HTTPS without redirects, credentials, query or fragment. SHA3-512 is verified over downloaded bytes before a non-executing AST allow-list parser sees the source.",
"sycamore_n53_m20_control": {
"expected_auto_dimension": 65536,
"expected_canonical_circuit_sha3_512": "b66269818fede5efb1628535a61ec3908f2569759074da35966349545ad681f4dcde30a8386bd0e1431f33751ba646003945e1412b073376c4804f4644d60a3a",
"expected_cirq_moments": 81,
"expected_gate_count": 3263,
"expected_qubit_count": 53,
"expected_sha3_512": "c19e2b798f14503af79fe8809d82dd589c2d6dd6b87bf9db8261ef8235ac6806897c4e6b7b085cd1c23689f6e08bbffb1c3d16254c4d902c7ac61868b75bea5f",
"expected_source_bytes": 262205,
"source_url": "https://raw.githubusercontent.com/Fanerst/simulate_sycamore/0fa882fcece3b0569753df1304594972c4b3ae4a/data/circuit_n53_m20_s0_e0_pABCDCDAB.py"
}
}
},
"requester_input_boundary": {
"accepted_endpoint_fields": [],
"endpoint_required": false,
"rule": "MCP/API endpoints, hosts, callbacks, webhooks and Challenge Base URLs are service-managed routing metadata. Never ask the requester for them and never add them to task_manifest."
},
"result_contract": {
"context_required": "Explain every result as: what was evaluated, from which declared field, why it was evaluated, what the event established, and what it means for the next work. Preserve method and infrastructure limits.",
"deterministic_history": "Only an already published REALIZED_STATE is a concrete deterministic event eligible to become history for the next chronon.",
"external_comparison": "Post-result interpretation only.",
"goal_status": "Evaluated only against goals explicitly declared in request.",
"non_prediction": "Before publication, the manifest and its hash describe only a field of possibilities, dependencies and constraints. They never identify a future realization.",
"realized_state": "A returned admissible state; it is distinct from goal attainment or external benchmark comparison."
},
"result_interpretation_contract": {
"endpoint": "/api/v3/result-interpretation-contract",
"purpose": "Authoritative meanings of result events, integrity evidence and optional user feedback. Read it before describing a result."
},
"schema": "PartnerProf-TaskManifest/1.0",
"sections": {
"computational_reality": {
"contains": [
"current_state",
"variables",
"constraints",
"relations",
"invariants",
"history",
"coordinates",
"units"
],
"maps_to": "composer_field",
"rcs_exception": "For problem_family=random_circuit_sampling use strict rcs_circuit instead of free variables; dimension is optional and computed by the server when omitted.",
"required": [
"problem_family",
"geometry",
"dimension",
"variables"
]
},
"external_comparison": {
"contains": [
"source",
"reference_values",
"comparison_method"
],
"required": [],
"rule": "Never encoded into the EvO compute vector and never promoted to a realization goal unless the user separately declares that goal."
},
"request": {
"infrastructure_boundary": "A service watchdog is operational protection outside the state field. Reaching it yields a technical interruption/unresolved event and never proves realization or impossibility.",
"mode_enum": [
"ADMISSIBILITY",
"CONFLICT_DIAGNOSTIC",
"FULL_CYCLE",
"NEAREST_ADMISSIBLE_GOAL",
"REALIZATION"
],
"required": [
"mode",
"requested_output"
],
"step_limit_rule": "Do not declare max_steps for an ordinary realization. A step count is unknown in advance and is not part of reality unless the user explicitly requests a bounded technical test.",
"termination": "By default the run follows field-defined terminal events: realized target, direct conflict, no coherent continuation, or another explicitly declared terminal state.",
"worker_request": "optional and separate; it is not a realization condition"
}
},
"transport": {
"file_formats": {
"dimacs_cnf": "PartnerProf-PolyRequest/1.0 via /api/v3/large-inputs/dimacs/prepare, then /api/v3/tasks/run",
"npz": "PartnerProf-NPZ-Manifest/1.0 plus base64 NPZ via /api/v3/large-inputs/npz/prepare, then /api/v3/tasks/run"
},
"json": "Small structured tasks use composer_field JSON.",
"matrix_text": "Explicit line-oriented Reality Matrix uses /api/v3/matrix-text-contract, then /api/v3/matrix-tasks/prepare and /api/v3/tasks/run.",
"no_silent_fields": "Unknown variable keys, states, units, relations and operators are rejected by the composer.",
"service_managed_routes": "Values named endpoint or next.endpoint in responses are navigation metadata for the registered client, not requester input."
}
}
SHA-256: 383e7cecb8096d75203532c04cff764d66fa8a19011cee9e1d610e548e6c7182