Microscopic diagonal entropy and its connection to basic thermodynamic relations
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- Type
- article
- Published
- 2008-06-17
- Cited by
- 160
- References
- 24
- Access
- Open access
- OpenAlex
- https://openalex.org/W2023333187
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:118412733
Keywords
Physics, Diagonal, Connection (principal bundle), Entropy (arrow of time), Statistical physics
References
- Statistical physics of particles
- From microphysics to macrophysics
- Quantum quenches and thermalization in one-dimensional fermionic systems
- Boltzmann entropy for dense fluids not in local equilibrium.
- Breakdown of the adiabatic limit in low-dimensional gapless systems
- Fundamentals of Statistical and Thermal Physics
- Quenches in quantum many-body systems: One-dimensional Bose-Hubbard model reexamined
- Thermalization and its mechanism for generic isolated quantum systems
- Minimal work principle: proof and counter-examples.
- Boltzmann's Entropy and Time's Arrow
- Microscopic expression for heat in the adiabatic basis.
- Regular and irregular semiclassical wavefunctions
- General properties of entropy
- Quantum versus classical foundation of statistical mechanics under experimentally realistic conditions.
- A mathematical theorem as the basis for the second law: Thomson's formulation applied to equilibrium
- Quantum mechanics: Non-relativistic theory,
- Fundamentals of statistical and thermal physics
- Foundations of statistical mechanics
- From Microphysics to Macrophysics
Cited by
- Complexity of controlling quantum many-body dynamics
- Colloquium: Nonequilibrium dynamics of closed interacting quantum systems
- Global large time dynamics and the generalized Gibbs ensemble
- Equilibration and nonclassicality of a double-well potential
- From quantum chaos and eigenstate thermalization to statistical mechanics and thermodynamics
- Measurement theory for closed quantum systems
- Stationary entanglement entropies following an interaction quench in 1D Bose gas
- Nuclear polarization and entanglement in spin systems
- Integrability versus quantum thermalization
- Kibble–Zurek scaling and string-net coarsening in topologically ordered systems
- Two-band Bose-Hubbard model for many-body resonant tunneling in the Wannier-Stark system
- One dimensional bosons: From condensed matter systems to ultracold gases
- Decoherence and equilibration under nondestructive measurements
- Many-body energy localization transition in periodically driven systems
- Probing entanglement in adiabatic quantum optimization with trapped ions
- Generalized thermalization in an integrable lattice system.
- Microscopic theory of non-adiabatic response in real and imaginary time
- Validity of the GGE for quantum quenches from interacting to noninteracting models
- Fidelity, Rosen-Zener dynamics, entropy and decoherence in one dimensional hard-core bosonic systems
- Impact of Land Reclamation on the Evolution of Shoreline Change and Nearshore Vegetation Distribution in Yangtze River Estuary
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