Publication | Open Access
Quantum Approach to a Derivation of the Second Law of Thermodynamics
109
Citations
8
References
2001
Year
Second LawQuantum ScienceQuantum DynamicEngineeringQuantum ComputingPhysicsQuantum DomainEntropyHilbert SpaceEntropy ProductionQuantum Mechanical PropertyQuantum ApproachQuantum TheoryQuantum SystemThermodynamicsThermodynamic EquilibriumMicrocanonical Conditions
We reinterpret the microcanonical conditions in the quantum domain as constraints for the interaction of the "gas subsystem" under consideration and its environment ("container"). The time average of a purity measure is found to equal the average over the respective path in Hilbert space. We then show that for typical (degenerate or nondegenerate) thermodynamical systems almost all states within the allowed region of Hilbert space have a local von Neumann entropy S close to the maximum and a purity P close to its minimum, respectively. Typically, thermodynamical systems should obey the second law.
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