2021
DOI: 10.48550/arxiv.2111.09508
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Correlation-enhanced Stability of Microscopic Cyclic Heat Engines

Guo-Hua Xu,
Gentaro Watanabe
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Cited by 3 publications
(9 citation statements)
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“…As shown before by Xu and Watanabe [43], a different behavior of single-cycle and long-time fluctuations is a result of correlations of the work generated in the successive cycles. Specifically, the long-time fluctuations are enhanced (reduced) by positive (negative) correlations.…”
Section: B Resultssupporting
confidence: 50%
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“…As shown before by Xu and Watanabe [43], a different behavior of single-cycle and long-time fluctuations is a result of correlations of the work generated in the successive cycles. Specifically, the long-time fluctuations are enhanced (reduced) by positive (negative) correlations.…”
Section: B Resultssupporting
confidence: 50%
“…However, as will be later discussed more thoroughly, the higher work cumulants may not grow linearly due to correlations of work generated in the successive cycles. In particular, the work variance grows sublinearly ( ∆w 2 N < N ∆w 2 1 ) for negative intercycle correlations while supralinearly ( ∆w 2 N > N ∆w 2 1 ) in the opposite case [43].…”
Section: A Methodsmentioning
confidence: 96%
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“…Heat engine in quantum dynamical field study has been pioneered by Scovil and Schulz-DuBois [1]. Replacing classical view to quantum view of thermodynamic gives significant impact to knowledge of heat engine models, such as solution for the fundamental restriction of thermodynamics in macro physics [2][3][4][5][6][7], as well as the study of micro control of adiabatic or particles behaviour in heat engine models [8][9][10][11][12][13][14]. Moreover, in quantum models, heat engine with adiabatic or isentropic process which require quasi-static process can be done in finite time.…”
Section: Introductionmentioning
confidence: 99%