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Controlling the transport of active matter in disordered lattices of asymmetrical obstacles

2019/08/31 by A. D. Borba, Jorge L. C. Domingos, J. L. C. Domingos +3
Physics and Astronomy · #Advanced Thermodynamics and Statistical Mechanics #Condensed matter physics #Current (fluid) #Lattice (music) #Mechanics #Micro and Nano Robotics #Physics #Statistical physics #Thermodynamics #Trapping #cond-mat.soft #cond-mat.stat-mech #stochastic dynamics and bifurcation

paper · pdf · doi:10.1103/physreve.101.022601

published as Phys. Rev. E 101, 022601 (2020) · 7 pages, 7 figures

arxiv created 2019/10/31 · openalex publication_date 2020/02/04 · arxiv updated 2020/02/12 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

We investigate the transport of active matter in the presence of a disordered square lattice of asymmetric obstacles, which is built by removing a fraction of them from the initial full lattice. We obtain a spontaneous inversion of the net particle current, compared to the usual sense of such a current as a function of the fraction of removed obstacles and particle density. We observed that the negative current regime is the consequence of trapping of particles among the obstacles which favors that more particles move in the negative current direction. The same reasoning applies to the positive current regime as well. We show a calculation that partially reproduces our numerical results, based on the argument that the mean current is given by the product of the mean speed and the mean number of travelers in each direction; the breakdown of this assumption is responsible for the failure of our calculation to reproduce the initial negative current regime.

Citations