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Onsager coefficients of a Brownian Carnot cycle

机译:布朗卡诺循环的Onsager系数

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We study a Brownian Carnot cycle introduced by Schmiedl and Seifert [Europhys. Lett. 81, 20003 (2008)] from a viewpoint of the linear irreversible thermodynamics. By considering the entropy production rate of this cycle, we can determine thermodynamic forces and fluxes of the cycle and calculate the Onsager coefficients for general protocols, that is, arbitrary schedules to change the potential confining the Brownian particle. We show that these Onsager coefficients contain the information of the protocol shape and they satisfy the tight-coupling condition irrespective of whatever protocol shape we choose. These properties may give an explanation why the Curzon-Ahlborn efficiency often appears in the finite-time heat engines.
机译:我们研究了由Schmiedl和Seifert [Europhys。提出的布朗卡诺循环。来吧81,20003(2008)]从线性不可逆热力学的角度。通过考虑该循环的熵产生速率,我们可以确定循环的热力学力和通量,并计算通用协议的Onsager系数,即,任意时间表以改变势能限制布朗粒子。我们表明,这些Onsager系数包含协议形状的信息,并且无论我们选择哪种协议形状,它们都满足紧密耦合条件。这些特性可以解释为什么在有限时间热机中经常出现Curzon-Ahlborn效率。

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