Irreversibility and Biased Ensembles in Active Matter: Insights from Stochastic Thermodynamics

IF 14.3 1区 物理与天体物理 Q1 PHYSICS, CONDENSED MATTER Annual Review of Condensed Matter Physics Pub Date : 2021-04-14 DOI:10.1146/annurev-conmatphys-031720-032419
'Etienne Fodor, R. Jack, M. Cates
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引用次数: 47

Abstract

Active systems evade the rules of equilibrium thermodynamics by constantly dissipating energy at the level of their microscopic components. This energy flux stems from the conversion of a fuel, present in the environment, into sustained individual motion. It can lead to collective effects without any equilibrium equivalent, some of which can be rationalized by using equilibrium tools to recapitulate nonequilibrium transitions. An important challenge is then to delineate systematically to what extent the character of these active transitions is genuinely distinct from equilibrium analogs. We review recent works that use stochastic thermodynamics tools to identify, for active systems, a measure of irreversibility comprising a coarse-grained or informatic entropy production. We describe how this relates to the underlying energy dissipation or thermodynamic entropy production, and how it is influenced by collective behavior. Then, we review the possibility of constructing thermodynamic ensembles out-of-equilibrium, where trajectories are biased toward atypical values of nonequilibrium observables. We show that this is a generic route to discovering unexpected phase transitions in active matter systems, which can also inform their design. Expected final online publication date for the Annual Review of Condensed Matter Physics, Volume 13 is March 2022. Please see http://www.annualreviews.org/page/journal/pubdates for revised estimates.
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活性物质的不可逆性和偏积:来自随机热力学的见解
主动系统通过不断耗散微观组件水平上的能量来规避平衡热力学规则。这种能量通量源于环境中存在的燃料转化为持续的个体运动。它可以导致没有任何平衡等价物的集体效应,其中一些可以通过使用平衡工具来概括非平衡跃迁来合理化。一个重要的挑战是系统地描述这些主动转变的特征在多大程度上与平衡类似物真正不同。我们回顾了最近的工作,这些工作使用随机热力学工具来识别活动系统的不可逆性,包括粗粒度或信息熵产生。我们描述了这与潜在的能量耗散或热力学熵产生之间的关系,以及它如何受到集体行为的影响。然后,我们回顾了在不平衡的情况下构建热力学系综的可能性,其中轨迹偏向于非平衡可观测值的非典型值。我们表明,这是发现活性物质系统中意外相变的一条通用途径,也可以为其设计提供信息。《凝聚态物理学年度评论》第13卷预计最终在线出版日期为2022年3月。请参阅http://www.annualreviews.org/page/journal/pubdates用于修订估算。
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
Annual Review of Condensed Matter Physics
Annual Review of Condensed Matter Physics PHYSICS, CONDENSED MATTER-
CiteScore
47.40
自引率
0.90%
发文量
27
期刊介绍: Since its inception in 2010, the Annual Review of Condensed Matter Physics has been chronicling significant advancements in the field and its related subjects. By highlighting recent developments and offering critical evaluations, the journal actively contributes to the ongoing discourse in condensed matter physics. The latest volume of the journal has transitioned from gated access to open access, facilitated by Annual Reviews' Subscribe to Open initiative. Under this program, all articles are now published under a CC BY license, ensuring broader accessibility and dissemination of knowledge.
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