Simple and efficient methods for local structural analysis in polydisperse hard disk systems

Daigo Mugita, Kazuyoshi Souno, Hiroaki Koyama, Taisei Nakamura, Masaharu Isobe
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Abstract

In nonequilibrium statistical physics, quantifying the nearest (and higher-order) neighbors and free volumes of particles in many-body systems is crucial to elucidating the origin of macroscopic collective phenomena, such as glass/granular jamming transitions and various aspects of the behavior of active matter. However, conventional techniques (based on a fixed-distance cutoff or the Voronoi construction) have mainly been applied to equilibrated, homogeneous, and monodisperse particle systems. In this paper, we implement simple and efficient methods for local structure analysis in nonequilibrium, inhomogeneous, and polydisperse hard disk systems. We show how these novel methods can overcome the difficulties encountered by conventional techniques as well as demonstrate some applications.
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用于多分散硬盘系统局部结构分析的简单高效方法
在非平衡统计物理学中,量化多体系统中粒子的近邻(和高阶)和自由体积对于阐明宏观集体现象的起源至关重要,例如玻璃/粒状干扰转换和活性物质行为的各个方面。然而,传统技术(基于固定距离截止或 Voronoi 结构)主要应用于平衡、均质和单分散粒子系统。在本文中,我们采用简单高效的方法,对非平衡、不均匀和多分散硬盘系统进行局部结构分析。我们展示了这些新方法如何克服传统技术遇到的困难,并演示了一些应用。
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