Chaos and Quantum Thermalization.¶
Srednicki, M. (1994). Chaos and Quantum Thermalization. Physical Review E, 50(2), 888-901.
Cited by¶
1 citation across 1 artifact.
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Primes¶
- Thermodynamic Equilibrium
- T6 — Quantum Equilibrium and Thermalization in Isolated Systems: Quantum isolated systems do not thermalize in the classical sense: energy eigenstates do not approach thermal distributions unless the system is "typical" (eigenstate thermalization hypothesis, ETH)
This sourceProposes eigenstate thermalization hypothesis (ETH) showing conditions under which isolated quantum systems approach thermal equilibrium; reveals that quantum equilibrium is not universal and depends on system integrability, interaction structure, and disorder properties.
- T6 — Quantum Equilibrium and Thermalization in Isolated Systems: Quantum isolated systems do not thermalize in the classical sense: energy eigenstates do not approach thermal distributions unless the system is "typical" (eigenstate thermalization hypothesis, ETH)
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Registry ID ref:b12c19282cdd · see in the full table