Persistence and first-passage properties in nonequilibrium systems

IF 35 1区 物理与天体物理 Q1 PHYSICS, CONDENSED MATTER
A. Bray, S. Majumdar, G. Schehr
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引用次数: 419

Abstract

In this review, we discuss the persistence and the related first-passage properties in extended many-body nonequilibrium systems. Starting with simple systems with one or few degrees of freedom, such as random walk and random acceleration problems, we progressively discuss the persistence properties in systems with many degrees of freedom. These systems include spin models undergoing phase-ordering dynamics, diffusion equation, fluctuating interfaces, etc. Persistence properties are nontrivial in these systems as the effective underlying stochastic process is non-Markovian. Several exact and approximate methods have been developed to compute the persistence of such non-Markov processes over the last two decades, as reviewed in this article. We also discuss various generalizations of the local site persistence probability. Persistence in systems with quenched disorder is discussed briefly. Although the main emphasis of this review is on the theoretical developments on persistence, we briefly touch upon various experimental systems as well.
非平衡系统的持续性和首次通过性质
本文讨论了扩展多体非平衡系统的持续性及其相关的首通道性质。从具有一个或几个自由度的简单系统(如随机漫步和随机加速问题)开始,我们逐步讨论了具有多个自由度系统的持久性。这些系统包括经历相序动力学的自旋模型、扩散方程、波动界面等。在这些系统中,由于有效的底层随机过程是非马尔可夫的,因此持久性是非平凡的。在过去的二十年中,已经开发了几种精确和近似的方法来计算这种非马尔可夫过程的持久性,如本文所述。我们还讨论了局部站点持续概率的各种推广。简要讨论了具有淬火无序的系统的持久性。虽然这篇综述的主要重点是关于持久性的理论发展,但我们也简要地谈到了各种实验系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Physics
Advances in Physics 物理-物理:凝聚态物理
CiteScore
67.60
自引率
0.00%
发文量
1
期刊介绍: Advances in Physics publishes authoritative critical reviews by experts on topics of interest and importance to condensed matter physicists. It is intended for motivated readers with a basic knowledge of the journal’s field and aims to draw out the salient points of a reviewed subject from the perspective of the author. The journal''s scope includes condensed matter physics and statistical mechanics: broadly defined to include the overlap with quantum information, cold atoms, soft matter physics and biophysics. Readership: Physicists, materials scientists and physical chemists in universities, industry and research institutes.
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