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凝聚态物理—北京大学论坛 2026年第 12期(No.653  since 2001)



发布日期:2026-05-18   点击数:

主讲人: Prof. Christian Maes
地点: 物理大楼中212报告厅
时间: 2026年5月21日(周四)下午3:00-4:30
主持 联系人: 全海涛 htquan@pku.edu.cn
主讲人简介: Christian Maes is professor at the Faculty of Sciences at the KU Leuven in Belgium.  He works on foundational aspects of nonequilibrium statistical mechanics. He did his Ph.D. with Joel L. Lebowitz in 1988, and works in mathematical physics, especially on general aspects of fluctuation and response theory of nonequilibrium systems. In his work with Karel Netocny he has identified the fluctuating entropy production as the source of time-reversal breaking in the action of dynamical ensembles (1999-2003).  More recently, he has introduced the concept of frenesy to unify aspects of the time-symmetric fluctuation sector in nonequilibria. His personal page is https://fys.kuleuven.be/english/staff/christ

题目:A Rayleigh criterion for mechanical instability:Inducing activity by chemo–mechanical coupling.

摘要 (Abstract) Instabilities in thermodynamic systems are often undesirable, as they can lead to loss of control or even catastrophic behavior. Yet, the same mechanisms can also generate rich nonequilibrium behavior and may play a constructive role in living systems. We introduce a theoretical framework, inspired by Rayleigh’s analysis of thermoacoustic instabilities, to study the emergence of mechanical activity. In particular, we derive Rayleigh-like criteria governing the onset of activity and the generation of rotational motion in a slow Newtonian probe coupled to driven chemical processes, described by Markov jump processes. These criteria are expressed in terms of the phase relation between entropic and frenetic contributions, providing a transparent condition for when chemical driving results in sustained rotational or active mechanical motion.

See arXiv:2605.06543v1 [cond-mat.stat-mech]


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