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非平衡朗之万系统中的能量耗散与涨落-响应关系的违背

Energy dissipation and violation of the fluctuation-response relation in nonequilibrium Langevin systems.

作者信息

Harada Takahiro, Sasa Shin-ichi

机构信息

Department of Physics, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Feb;73(2 Pt 2):026131. doi: 10.1103/PhysRevE.73.026131. Epub 2006 Feb 27.

Abstract

The fluctuation-response relation is a fundamental relation that is applicable to systems near equilibrium. On the other hand, when a system is driven far from equilibrium, this relation is violated in general because the detailed-balance condition is not satisfied in nonequilibrium systems. Even in this case, it has been found that for a class of Langevin equations, there exists an equality between the extent of violation of the fluctuation-response relation in the nonequilibrium steady state and the rate of energy dissipation from the system into the environment [T. Harada and S.-i. Sasa, Phys. Rev. Lett. 95, 130602 (2005)]. Since this equality involves only experimentally measurable quantities, it serves as a proposition to determine experimentally whether the system can be described by a Langevin equation. Furthermore, the contribution of each degree of freedom to the rate of energy dissipation can be determined based on this equality. In this paper, we present a comprehensive description on this equality, and provide a detailed derivation for various types of models including many-body systems, Brownian motor models, time-dependent systems, and systems with multiple heat reservoirs.

摘要

涨落-响应关系是一个适用于近平衡系统的基本关系。另一方面,当一个系统被驱动到远离平衡态时,由于非平衡系统不满足细致平衡条件,该关系通常会被违反。即便如此,人们发现对于一类朗之万方程,在非平衡稳态下涨落-响应关系的违反程度与系统向环境的能量耗散率之间存在一个等式关系 [T. Harada和S.-i. Sasa,《物理评论快报》95, 130602 (2005)]。由于这个等式只涉及实验可测量的量,它可作为一个命题,通过实验来确定该系统是否能用朗之万方程描述。此外,基于这个等式可以确定每个自由度对能量耗散率的贡献。在本文中,我们对这个等式给出了全面描述,并对包括多体系统、布朗运动模型、含时系统以及具有多个热库的系统等各种类型的模型进行了详细推导。

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