Martin David, O'Byrne Jérémy, Cates Michael E, Fodor Étienne, Nardini Cesare, Tailleur Julien, van Wijland Frédéric
Université de Paris, Laboratoire Matière et Systèmes Complexes (MSC), UMR 7057 CNRS,F-75205 Paris, France.
DAMTP, Centre for Mathematical Sciences, University of Cambridge, Wilberforce Road, Cambridge CB3 0WA, United Kingdom.
Phys Rev E. 2021 Mar;103(3-1):032607. doi: 10.1103/PhysRevE.103.032607.
We study the statistical properties of active Ornstein-Uhlenbeck particles (AOUPs). In this simplest of models, the Gaussian white noise of overdamped Brownian colloids is replaced by a Gaussian colored noise. This suffices to grant this system the hallmark properties of active matter, while still allowing for analytical progress. We study in detail the steady-state distribution of AOUPs in the small persistence time limit and for spatially varying activity. At the collective level, we show AOUPs to experience motility-induced phase separation both in the presence of pairwise forces or due to quorum-sensing interactions. We characterize both the instability mechanism leading to phase separation and the resulting phase coexistence. We probe how, in the stationary state, AOUPs depart from their thermal equilibrium limit by investigating the emergence of ratchet currents and entropy production. In the small persistence time limit, we show how fluctuation-dissipation relations are recovered. Finally, we discuss how the emerging properties of AOUPs can be characterized from the dynamics of their collective modes.
我们研究了活性奥恩斯坦-乌伦贝克粒子(AOUPs)的统计特性。在这个最简单的模型中,过阻尼布朗胶体的高斯白噪声被高斯有色噪声所取代。这足以赋予该系统活性物质的标志性特性,同时仍允许取得分析进展。我们详细研究了在小持久时间极限和空间变化活性下AOUPs的稳态分布。在集体层面,我们表明AOUPs在存在成对力或由于群体感应相互作用时都会经历运动诱导的相分离。我们刻画了导致相分离的不稳定性机制以及由此产生的相共存。我们通过研究棘轮电流和熵产生的出现来探究在稳态下AOUPs如何偏离其热平衡极限。在小持久时间极限下,我们展示了如何恢复涨落耗散关系。最后,我们讨论了如何从AOUPs集体模式的动力学来刻画其新兴特性。