涡流
物理
集体运动
集体行为
极地的
角速度
订单(交换)
经典力学
活性物质
自组织
液晶
统计物理学
凝聚态物理
机械
量子力学
计算机科学
细胞生物学
财务
生物
经济
人工智能
社会学
人类学
作者
Ken Nagai,Yutaka Sumino,Raúl Montagne,Igor S. Aranson,Hugues Chaté
标识
DOI:10.1103/physrevlett.114.168001
摘要
We show that memory, in the form of underdamped angular dynamics, is a crucial ingredient for the collective properties of self-propelled particles. Using Vicsek-style models with an Ornstein-Uhlenbeck process acting on angular velocity, we uncover a rich variety of collective phases not observed in usual overdamped systems, including vortex lattices and active foams. In a model with strictly nematic interactions the smectic arrangement of Vicsek waves giving rise to global polar order is observed. We also provide a calculation of the effective interaction between vortices in the case where a telegraphic noise process is at play, explaining thus the emergence and structure of the vortex lattices observed here and in motility assay experiments.
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