In a chaotic quantum system, higher-order correlations reach thermal equilibrium faster than state design moments, both relaxing exponentially.
Srednicki,Chaos and quantum thermalization, Phys
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Semiclassical spectrum tomography links classical phase-space structures to metastability, chaos, and quantum ergodicity in finite Bose-Hubbard rings and chains.
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Timescales for Deep and Full Thermalization
In a chaotic quantum system, higher-order correlations reach thermal equilibrium faster than state design moments, both relaxing exponentially.
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Metastability, chaos and spectrum tomography for Bose-Hubbard rings and chains
Semiclassical spectrum tomography links classical phase-space structures to metastability, chaos, and quantum ergodicity in finite Bose-Hubbard rings and chains.