活性物质
非平衡态热力学
物理
持久性(不连续性)
集体运动
动力学(音乐)
分散性
不稳定性
经典力学
领域(数学)
凝聚态物理
机械
材料科学
热力学
地质学
声学
细胞生物学
岩土工程
高分子化学
纯数学
生物
数学
作者
Yann-Edwin Keta,Robert L. Jack,Ludovic Berthier
标识
DOI:10.1103/physrevlett.129.048002
摘要
We explore the emergence of nonequilibrium collective motion in disordered nonthermal active matter when persistent motion and crowding effects compete, using simulations of a two-dimensional model of size polydisperse self-propelled particles. In stark contrast with monodisperse systems, we find that polydispersity stabilizes a homogeneous active liquid at arbitrary large persistence times, characterized by remarkable velocity correlations and irregular turbulent flows. For all persistence values, the active fluid undergoes a nonequilibrium glass transition at large density. This is accompanied by collective motion, whose nature evolves from near-equilibrium spatially heterogeneous dynamics at small persistence, to a qualitatively different intermittent dynamics when persistence is large. This latter regime involves a complex time evolution of the correlated displacement field.
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