论文标题

主动单文件动力学中的通用缩放

Universal scaling in active single-file dynamics

论文作者

Dolai, Pritha, Das, Arghya, Kundu, Anupam, Dasgupta, Chandan, Dhar, Abhishek, Kumar, K. Vijay

论文摘要

我们研究三类活跃粒子的单文件动力学:跑步颗粒,活跃的布朗颗粒和活跃的Ornstein-uhlenbeck颗粒。在高活性值下,粒子通过纯粹的排斥力和短距力的力进行相互作用,汇总成几个具有可比尺寸的动力和动态簇,并且不显示散装的相位隔离。在这种动态稳态中,我们发现这些聚集体的群集大小分布是具有相同缩放函数的三种活性粒子模型的密度和活性参数的缩放函数。这些运动簇的速度分布是非高斯的。我们表明,这些簇的有效动力学可以解释所有具有相同缩放指数和功能的三个模型的标记粒子均值位移的均衡位移的紧急缩放。与在高活动性活动中看到的聚类的同时,我们观察到静态密度相关函数显示了丰富的结构,包括多个峰,让人联想到由有效的有吸引力的相互作用引起的粒子聚类,而动力学变体则显示出非延伸性缩放。我们的研究揭示了相互作用的活性粒子的单文件动力学中的普遍缩放行为。

We study the single-file dynamics of three classes of active particles: run-and-tumble particles, active Brownian particles and active Ornstein-Uhlenbeck particles. At high activity values, the particles, interacting via purely repulsive and short-ranged forces, aggregate into several motile and dynamical clusters of comparable size, and do not display bulk phase-segregation. In this dynamical steady-state, we find that the cluster size distribution of these aggregates is a scaled function of the density and activity parameters across the three models of active particles with the same scaling function. The velocity distribution of these motile clusters is non-Gaussian. We show that the effective dynamics of these clusters can explain the observed emergent scaling of the mean-squared displacement of tagged particles for all the three models with identical scaling exponents and functions. Concomitant with the clustering seen at high activities, we observe that the static density correlation function displays rich structures, including multiple peaks that are reminiscent of particle clustering induced by effective attractive interactions, while the dynamical variant shows non-diffusive scaling. Our study reveals a universal scaling behavior in the single-file dynamics of interacting active particles.

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