학술논문

Quantum heat engine with identical particles and level degeneracy.
Document Type
Article
Source
International Journal of Modern Physics B: Condensed Matter Physics; Statistical Physics; Applied Physics. 3/30/2024, Vol. 38 Issue 8, p1-18. 18p.
Subject
*HEAT engines
*QUANTUM thermodynamics
*ISOCHORIC processes
*EXCITED states
*ISOTHERMAL processes
*STIRLING engines
Language
ISSN
0217-9792
Abstract
In this paper, the effects of identical particles and energy-level degeneracy on the work output of the quantum Otto and Stirling heat engines are studied. For quantum Otto heat engine, we find the effects of degeneracy in the ground state and in the excited state are same in the high-temperature limitation while the work done by a system with n-fold degeneracy in the excited state (ground state) is n (1 ∕ n) times the one without degeneracy in the single-particle case. Moreover, the effects of the identical two-level systems with degeneracy in the ground state or excited state as working substances are discussed. The results of such problem for the Stirling and Carnot heat engines are similar. By analytical derivations in two limit conditions, we conclude that for the cycles which are composed of the quantum adiabatic process, isochoric process and isothermal process have similar results. [ABSTRACT FROM AUTHOR]