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Quantum Boltzmann Machine: Annealed Generative Sampling (2D)

A quantum Boltzmann machine draws its training samples not from thermal noise alone but from a physical quantum annealing schedule: a transverse-field term that starts strong enough to put every qubit into superposition, then is dialled down while an Ising coupling is dialled up, freezing the lattice into low-energy configurations. This 2D view renders the same live 6×6 qubit lattice under the same mean-field solution of that schedule as a flat, pannable/zoomable grid — tune the coupling, initial transverse field and temperature, run the anneal and watch spins settle from a quantum-disordered haze into ordered domains, then draw samples and compare their energy distribution against a purely classical Boltzmann machine run with the same coupling and temperature but no quantum fluctuations.