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Self-Propelled Rods: Insights and Perspectives for Active Matter
Annual Review of Condensed Matter Physics ( IF 14.3 ) Pub Date : 2020-03-16 , DOI: 10.1146/annurev-conmatphys-031119-050611
Markus Bär 1 , Robert Großmann 2 , Sebastian Heidenreich 1 , Fernando Peruani 3
Affiliation  

A wide range of experimental systems including gliding, swarming and swimming bacteria, in vitro motility assays, and shaken granular media are commonly described as self-propelled rods. Large ensembles of those entities display a large variety of self-organized, collective phenomena, including the formation of moving polar clusters, polar and nematic dynamic bands, mobility-induced phase separation, topological defects, and mesoscale turbulence, among others. Here, we give a brief survey of experimental observations and review the theoretical description of self-propelled rods. Our focus is on the emergent pattern formation of ensembles of dry self-propelled rods governed by short-ranged, contact mediated interactions and their wet counterparts that are also subject to long-ranged hydrodynamic flows. Altogether, self-propelled rods provide an overarching theme covering many aspects of active matter containing well-explored limiting cases. Their collective behavior not only bridges the well-studied regimes of polar self-propelled particles and active nematics, and includes active phase separation, but also reveals a rich variety of new patterns.

中文翻译:


自行式鱼竿:主动问题的见解和观点

包括滑翔,成群和游泳细菌,体外运动测定和摇动的颗粒培养基在内的各种实验系统通常被称为自推杆。这些实体的大型集合体表现出各种各样的自组织,集体现象,包括运动的极性簇,极性和向列动态谱带的形成,迁移率引起的相分离,拓扑缺陷和中尺度湍流等。在这里,我们对实验观察进行了简要调查,并回顾了自走杆的理论描述。我们的重点是由短距离,接触介导的相互作用控制的干式,自行式干棒的集合的新兴模式形成,以及它们的湿式类似物(也受到远程流体动力流动的影响)。共,自走式推杆提供了一个涵盖了活性物质许多方面的总体主题,其中包含了经过充分探索的极限情况。它们的集体行为不仅架设了经过研究的极性自推进粒子和主动向列相的体系,包括主动相分离,而且还揭示了各种新模式。

更新日期:2020-04-21
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