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首页> 外文期刊>The European physical journal: Special topics >Cluster dynamics and cluster size distributions in systems of self-propelled particles
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Cluster dynamics and cluster size distributions in systems of self-propelled particles

机译:自推进粒子系统中的团簇动力学和团簇尺寸分布

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摘要

Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in the presence of noise exhibit rich clustering dynamics. Often, clusters are responsible for the distribution of (local) information in these systems. Here, we investigate the properties of individual clusters in SPP systems, in particular the asymmetric spreading behavior of clusters with respect to their direction of motion. In addition, we formulate a Smoluchowski-type kinetic model to describe the evolution of the cluster size distribution (CSD). This model predicts the emergence of steady-state CSDs in SPP systems. We test our theoretical predictions in simulations of SPP with nematic interactions and find that our simple kinetic model reproduces qualitatively the transition to aggregation observed in simulations.
机译:在存在噪声的情况下,通过速度对齐机制相互作用的自推进粒子(SPP)系统表现出丰富的聚类动力学。通常,集群负责在这些系统中分发(本地)信息。在这里,我们研究了SPP系统中单个群集的属性,尤其是群集相对于其运动方向的不对称扩展行为。此外,我们制定了Smoluchowski型动力学模型来描述簇尺寸分布(CSD)的演变。该模型预测了SPP系统中稳态CSD的出现。我们在向列相互作用的SPP模拟中测试了理论预测,发现我们的简单动力学模型从质上再现了模拟中观察到的向聚集的过渡。

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