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热驱动和非热驱动的自推进粒子三维群集。

Thermal and athermal three-dimensional swarms of self-propelled particles.

作者信息

Nguyen Nguyen H P, Jankowski Eric, Glotzer Sharon C

机构信息

Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Jul;86(1 Pt 1):011136. doi: 10.1103/PhysRevE.86.011136. Epub 2012 Jul 30.

Abstract

Swarms of self-propelled particles exhibit complex behavior that can arise from simple models, with large changes in swarm behavior resulting from small changes in model parameters. We investigate the steady-state swarms formed by self-propelled Morse particles in three dimensions using molecular dynamics simulations optimized for graphics processing units. We find a variety of swarms of different overall shape assemble spontaneously and that for certain Morse potential parameters at most two competing structures are observed. We report a rich "phase diagram" of athermal swarm structures observed across a broad range of interaction parameters. Unlike the structures formed in equilibrium self-assembly, we find that the probability of forming a self-propelled swarm can be biased by the choice of initial conditions. We investigate how thermal noise influences swarm formation and demonstrate ways it can be exploited to reconfigure one swarm into another. Our findings validate and extend previous observations of self-propelled Morse swarms and highlight open questions for predictive theories of nonequilibrium self-assembly.

摘要

成群的自驱动粒子表现出复杂的行为,这种行为可以由简单的模型产生,模型参数的微小变化会导致群体行为的巨大变化。我们使用针对图形处理单元优化的分子动力学模拟,研究了三维空间中由自驱动莫尔斯粒子形成的稳态群体。我们发现,各种不同整体形状的群体自发组装,并且对于某些莫尔斯势参数,最多观察到两种相互竞争的结构。我们报告了在广泛的相互作用参数范围内观察到的无热群体结构的丰富“相图”。与平衡自组装中形成的结构不同,我们发现形成自驱动群体的概率可能会受到初始条件选择偏向。我们研究了热噪声如何影响群体形成,并展示了如何利用热噪声将一个群体重新配置为另一个群体。我们的发现验证并扩展了先前对自驱动莫尔斯群体的观察,并突出了非平衡自组装预测理论的开放性问题。

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