Toward a quantum generalization of equilibrium statistical thermodynamics: A-k Dynamics

We show that the quantum statistical mechanics (QSM) describing the quantum and thermal properties of objects only has the sense of a particular semiclassical approximation. We propose a more general microdescription than in QSM of objects in a thermal bath with the vacuum explicitly taken into account; we call it A -k dynamics. We construct a qualitatively new model of the object environment, namely, a quantum thermal bath. We study its properties including the cases of a "cold" and a "thermal" vacuum. We introduce the stochastic action operator and show its fundamental role in the microdescription. We establish that the corresponding macroparameter, the effective action, plays just as significant a role in the macrodescription. The most important effective macroparameters of equilibrium quantum statistical thermodynamics-internal energy, temperature, and entropy-are expressed in terms of this macroparameter.

Authors
Number of issue
2
Language
English
Pages
1177-1189
Status
Published
Volume
160
Year
2009
Organizations
  • 1 Joint Inst Nucl Res, Dubna, Moscow Oblast, Russia
  • 2 Patrice Lumumba Peoples Friendship Univ, Moscow, Russia
Keywords
(h)over-bar-k dynamics; quantum thermal bath; cold vacuum; thermal vacuum; stochastic action operator; effective action; quantum-thermal entropy
Date of creation
19.10.2018
Date of change
19.10.2018
Short link
https://repository.rudn.ru/en/records/article/record/8659/
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