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

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

19 Apr 2024arXiv:2404.12912links table onlyarchive 2025-07-28

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

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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 demonstrating some applications.

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