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首页> 外文期刊>Physical review, E >Order-disorder transition in repulsive self-propelled particle systems
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Order-disorder transition in repulsive self-propelled particle systems

机译:令人厌恶的自推进粒子系统中的秩序障碍过渡

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摘要

We study the collective dynamics of repulsive self-propelled particles. The particles are governed by coupled equations of motion that include polar self-propulsion, damping of velocity and of polarity, repulsive particle-particle interaction, and deterministic dynamics. Particle dynamics simulations show that the collective coherent motion with large density fluctuations spontaneously emerges from a disordered, isotropic state. In the parameter region where the rotational damping of polarity is strong, the system undergoes an abrupt shift to the absorbing ordered state after a waiting period in the metastable disordered state. In order to obtain a simple understanding of the mechanism underlying the collective behavior, we analyze the binary particle scattering process. We show that this approach correctly predicts the order-disorder transition at a dilute limit. The same approach is expanded for finite densities, although it disagrees with the result from many-particle simulations due to many-body correlations and density fluctuations.
机译:我们研究了令人厌恶的自走式颗粒的集体动态。颗粒通过包括极性自推进,速度和极性,排斥粒子颗粒相互作用和确定性动态的极性自推进,阻尼的耦合方程来控制。粒子动力学模拟表明,具有大密度波动的集体相干运动自发地从无序的各向同性状态出现。在极性旋转阻尼的旋转阻尼的参数区域中,在亚稳态无序状态下的等待时段之后,系统经历突然转变到吸收有序状态。为了使对集体行为的基础的简单理解,我们分析二元粒子散射过程。我们表明这种方法正确预测稀释极限的秩序障碍转变。为有限密度扩展了相同的方法,尽管它因许多身体相关性和密度波动而异粒子模拟中不同意。

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