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Thermodynamics based on the principle of least abbreviated action: Entropy production in a network of coupled oscillators

机译:基于最小缩写作用原理的热力学:耦合振荡器网络中的熵产生

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摘要

We present some novel thermodynamic ideas based on the Maupertuis principle. By considering Hamiltonians written in terms of appropriate action-angle variables we show that thermal states can be characterized by the action variables and by their evolution in time when the system is nonintegrable. We propose dynamical definitions for the equilibrium temperature and entropy as well as an expression for the nonequilibrium entropy valid for isolated systems with many degrees of freedom. This entropy is shown to increase in the relaxation to equilibrium of macroscopic systems with short-range interactions, which constitutes a dynamical justification of the Second Law of Thermodynamics. Several examples are worked out to show that this formalism yields the right micro-canonical (equilibrium) quantities. The relevance of this approach to nonequilibrium situations is illustrated with an application to a network of coupled oscillators (Kuramoto model). We provide an expression for the entropy production in this system finding that its positive value is directly related to dissipation at the steady state in attaining order through synchronization. (c) 2008 Elsevier Inc. All rights reserved.
机译:我们提出了一些基于毛珀瑞斯原理的新颖热力学思想。通过考虑用适当的作用角变量表示的哈密顿量,我们表明,当系统不可积分时,热状态可以用作用变量及其随时间的演化来表征。我们提出了平衡温度和熵的动力学定义,以及对具有许多自由度的孤立系统有效的非平衡熵的表达式。该熵显示出在具有短程相互作用的宏观系统的弛豫到平衡的过程中增加,这构成了热力学第二定律的动力学证明。算出了几个例子,表明这种形式主义产生了正确的微规范(平衡)量。通过将其应用于耦合振荡器网络(仓本模型)来说明这种方法与非平衡情况的相关性。我们提供了该系统中熵产生的表达式,发现它的正值与稳态下的耗散直接相关,并且通过同步达到了顺序。 (c)2008 Elsevier Inc.保留所有权利。

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