Correspondence between the Energy Equipartition Theorem in Classical Mechanics and Its Phase-Space Formulation in Quantum Mechanics

Author:

Marulanda Esteban1ORCID,Restrepo Alejandro1ORCID,Restrepo Johans12ORCID

Affiliation:

1. Instituto de Física, Universidad de Antioquia, Calle 70 No. 52-21, Medellín 050010, Colombia

2. Group of Magnetism and Simulation, Instituto de Física, Universidad de Antioquia, A.A. 1226, Medellín 050010, Colombia

Abstract

In classical physics, there is a well-known theorem in which it is established that the energy per degree of freedom is the same. However, in quantum mechanics, due to the non-commutativity of some pairs of observables and the possibility of having non-Markovian dynamics, the energy is not equally distributed. We propose a correspondence between what is known as the classical energy equipartition theorem and its counterpart in the phase-space formulation in quantum mechanics based on the Wigner representation. Further, we show that in the high-temperature regime, the classical result is recovered.

Funder

CODI-UdeA projects

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference20 articles.

1. Greiner, W. (1995). Thermodynamics and Statistical Mechanics, Springer.

2. Enss, C., and Hunklinger, S. (2005). Low-Temperature Physics, Springer. [1st ed.].

3. Quantum Counterpart of Classical Equipartition of Energy;J. Stat. Phys.,2020

4. Quantum analogue of energy equipartition theorem;Bialas;J. Phys. A Math. Theor.,2019

5. The equipartition for quantum systems;Martens;Lett. Math. Phys.,1979

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