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- W4376150044 abstract "By using trajectory averaging to analyze the statistics of energy dissipation in the nonequilibrium energy-state transitions of a driven two-state system, we show that the average energy dissipation induced by external driving is connected to its fluctuations about equilibrium through the simple relation $2{k}_{mathrm{B}}Tensuremath{langle}Qensuremath{rangle}=ensuremath{langle}ensuremath{delta}{Q}^{2}ensuremath{rangle}$, which is preserved by an adiabatic approximation scheme. We use this scheme to obtain the heat statistics of a single-electron box with a superconducting lead in the slow-driving regime, where the dissipated heat becomes normally distributed with a relatively high probability to be extracted from the environment rather than dissipated. We also discuss the validity of heat fluctuation relations beyond driven two-state transitions and the slow-driving regime." @default.
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- W4376150044 date "2023-05-11" @default.
- W4376150044 modified "2023-09-23" @default.
- W4376150044 title "Fluctuations of heat in driven two-state systems: Application to a single-electron box with superconducting gap" @default.
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- W4376150044 doi "https://doi.org/10.1103/physreve.107.054113" @default.
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