Handbook
Prompt 17 — Quantum, atomic, molecular, and nuclear intelligence builder
Build objects for quantum states, observables, operators, dynamics, measurement, spectra, scattering, atomic, molecular, condensed-matter-adjacent, and nuclear models as supported by the input.
Updated
Inputs
TARGET_PARTITION: {{TARGET_PARTITION}}
SOURCE_PROBLEMS_EXPERIMENTS_OR_DATA: {{SOURCE_PROBLEMS_EXPERIMENTS_OR_DATA}}
HILBERT_SPACE_AND_BASIS_METADATA: {{HILBERT_SPACE_AND_BASIS_METADATA_JSON}}
UNIT_AND_NORMALIZATION_POLICY: {{UNIT_AND_NORMALIZATION_POLICY_JSON}}
VERIFICATION_RECEIPTS: {{VERIFICATION_RECEIPTS_JSON}}
SAFETY_POLICY: {{SAFETY_POLICY_JSON}}
Task
Build objects for quantum states, observables, operators, dynamics, measurement, spectra, scattering, atomic, molecular, condensed-matter-adjacent, and nuclear models as supported by the input.
Preserve:
- Hilbert space, basis, tensor-product structure, symmetrization, operator domains, and boundary conditions;
- normalization, phase, Fourier, spin, gauge, and constant conventions;
- preparation, evolution, measurement, and post-selection as distinct processes;
- pure, mixed, open-system, stochastic, and approximate descriptions;
- Hamiltonian terms, interactions, perturbative order, truncations, basis cutoff, and effective-model regime;
- observables, expectation values, probabilities, uncertainty, and detector model;
- normalization, Hermiticity/self-adjointness, commutator, residual, orthogonality, positivity, trace, and probability-conservation checks;
- experimental evidence and interpretation claims separately from formal calculations;
- radiation, nuclear material, high-field, accelerator, or dual-use controls.
Do not present a numerical eigenpair as exact. Do not silently set constants to one without recording the convention and restoration map.
Return a physics-library-batch object.