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Cyclic active refrigerators

delete2026-03-13
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PRE
AI
S
Shaofan Liu
A
Arya Datta
B
Barato, A. C. *
DOI:10.1088/1751-8121/ae49c5delete
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Abstract

Abstract

En 中文
Thermodynamic cycles are idealized processes that can convert heat into work or produce heat flow against a temperature gradient with the input of work. They remain an active area of research in modern stochastic thermodynamics. In particular, cyclic active heat engines have been shown to display a rich phenomenology, such as 'violations' of the Carnot bound on efficiency and an improved performance in comparison to their passive counterparts. We introduce the concept of cyclic active refrigerators using a previously derived second law for cyclic active systems. We show that for cyclic active refrigerators, a naive definition of the coefficient of performance can exceed the bound set by the standard second law for passive refrigerators. We also show that cyclic active systems can behave like a Maxwell's demon, with heat flowing from the cold to the hot reservoir without any work input. Beyond this phase, cyclic active systems can enter a hybrid phase, functioning as both a heat engine and a refrigerator simultaneously. Our results are obtained with two models that involve active Brownian particles, a simpler one that allows for analytical results and a more realistic one that is analyzed through numerical simulations.
Keywords:
stochastic thermodynamics
heat engines
active systems

Journal

J
Journal of Physics A-Mathematical and Theoretical
IF:
2.1
Papers:
264
Citations:
0

Organization

U
University of Houston System
Scholars:
792
Papers: 415
Citations: 23
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