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耦合到有限尺寸库的量子点的随机热力学

Stochastic Thermodynamics of a Quantum Dot Coupled to a Finite-Size Reservoir.

作者信息

Moreira Saulo V, Samuelsson Peter, Potts Patrick P

机构信息

Department of Physics and NanoLund, Lund University, Box 118, 22100 Lund, Sweden.

School of Physics, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Phys Rev Lett. 2023 Dec 1;131(22):220405. doi: 10.1103/PhysRevLett.131.220405.

Abstract

In nanoscale systems coupled to finite-size reservoirs, the reservoir temperature may fluctuate due to heat exchange between the system and the reservoirs. To date, a stochastic thermodynamic analysis of heat, work, and entropy production in such systems is, however, missing. Here we fill this gap by analyzing a single-level quantum dot tunnel coupled to a finite-size electronic reservoir. The system dynamics is described by a Markovian master equation, depending on the fluctuating temperature of the reservoir. Based on a fluctuation theorem, we identify the appropriate entropy production that results in a thermodynamically consistent statistical description. We illustrate our results by analyzing the work production for a finite-size reservoir Szilard engine.

摘要

在与有限尺寸储能器耦合的纳米尺度系统中,由于系统与储能器之间的热交换,储能器温度可能会发生波动。然而,迄今为止,此类系统中热、功和熵产生的随机热力学分析尚付阙如。在此,我们通过分析一个与有限尺寸电子储能器隧道耦合的单能级量子点来填补这一空白。系统动力学由一个马尔可夫主方程描述,该方程取决于储能器的波动温度。基于涨落定理,我们确定了合适的熵产生,从而得到一个热力学上一致的统计描述。我们通过分析有限尺寸储能器齐拉德引擎的功产生来说明我们的结果。

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