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从混沌动力学到随机过程的周期、随机性和输运。

Cycles, randomness, and transport from chaotic dynamics to stochastic processes.

机构信息

Center for Nonlinear Phenomena and Complex Systems, Université Libre de Bruxelles, Code Postal 231, Campus Plaine, B-1050 Brussels, Belgium.

出版信息

Chaos. 2015 Sep;25(9):097606. doi: 10.1063/1.4916922.

Abstract

An overview of advances at the frontier between dynamical systems theory and nonequilibrium statistical mechanics is given. Sensitivity to initial conditions is a mechanism at the origin of dynamical randomness-alias temporal disorder-in deterministic dynamical systems. In spatially extended systems, sustaining transport processes, such as diffusion, relationships can be established between the characteristic quantities of dynamical chaos and the transport coefficients, bringing new insight into the second law of thermodynamics. With methods from dynamical systems theory, the microscopic time-reversal symmetry can be shown to be broken at the statistical level of description in nonequilibrium systems. In this way, the thermodynamic entropy production turns out to be related to temporal disorder and its time asymmetry away from equilibrium.

摘要

介绍了动力系统理论和非平衡统计力学前沿的进展。对初始条件的敏感性是确定性动力系统中动力学随机性(别名时间无序)的起源机制。在空间扩展系统中,维持输运过程(如扩散),可以在动力学混沌的特征量和输运系数之间建立关系,为热力学第二定律提供新的见解。利用动力系统理论的方法,可以证明非平衡系统的描述在统计水平上微观时间反演对称性被打破。通过这种方式,热力学熵产生与时间无序及其远离平衡时的时间不对称性相关。

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