Core Physics
NQE1 supports statevectors, density matrices, Hermitian Hamiltonians, observables, measurement, unitary evolution, and Lindblad open-system dynamics.
Quantum Engine
The pure quantum physics engine layer
The Quantum Engine page describes the core physics architecture: quantum states, Hamiltonians, measurement, dynamics, entanglement, open-system noise, control, photonics, and auditability.
NQE1 supports statevectors, density matrices, Hermitian Hamiltonians, observables, measurement, unitary evolution, and Lindblad open-system dynamics.
The auditor checks physicality, trace preservation, Hamiltonian validity, unitarity, probabilities, Kraus channels, and measurement validity.
The engine currently includes qubits, oscillators, Kerr resonators, optomechanics, Jaynes-Cummings systems, and linear-optics photonics.
v1.5 added memory preflight, representation recommendations, diagonal-Hamiltonian fast paths, and block-diagonal utilities.
NQE1 is currently in the v1.6 research expansion line: performance scaling, efficiency preflight, and internal quantum experiment lab.