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Updated: Mar 9, 2026

Image-based Lagrangian Particle Tracking in Bed-load Experiments
Published on: July 20, 2017
Spatial heterogeneity can facilitate the target search of self-propelled particles
Jiajun Wang1, Donghua Zhang1, Baicheng Xia1
1CAS Key Laboratory of Soft Matter Chemistry, and Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, Anhui Province 230026, P. R. China. ywcheng@ustc.edu.cn.
Abstract:
A numerical investigation of the target search dynamics of self-propelled particles (SPPs) in heterogeneous environments is presented in this work. We show that the spatial heterogeneity has a dramatic effect on the target search dynamics of SPPs. The relative magnitude of the self-propulsion length lp and the radius of the circular domain Rc determines how the mean search time of SPPs τ depends on the area fraction of fixed obstacles ϕob. For lp < Rc, the target search process is diffusion-dominated so that a monotonic increase in τ with increasing ϕob is observed. For lp > Rc, τ is shown to be a non-monotonic convex function as a function of ϕob due to the interplay of the distribution-dominated and diffusion-dominated dynamic regimes. Furthermore, at fixed ϕob, τ shows a minimum upon increasing the self-propulsion velocity v0 of a SPP of a slow rotational diffusion when it searches for a target at low ϕob, while it decreases monotonically at high ϕob. The present work highlights that the introduction of spatial heterogeneity causes rich dynamic behaviors of a SPP searching for a target, and deepens our understanding of the transport of active matter in heterogeneous media.

