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Dynamic phases and combing effects for elongated particles moving over quenched disorder.

作者信息

Libál A, Stepanov S, Reichhardt C, Reichhardt C J O

机构信息

Mathematics and Computer Science Department, Babes-Bolyai University, Cluj 400084, Romania.

Physics Department, Babes-Bolyai University, Cluj 400084, Romania.

出版信息

Soft Matter. 2023 Oct 25;19(41):7937-7943. doi: 10.1039/d3sm01034a.

DOI:10.1039/d3sm01034a
PMID:37814545
Abstract

We consider a two-dimensional system of elongated particles driven over a landscape containing randomly placed pinning sites. For varied pinning site density, external drive magnitude, and particle elongation, we find a wide variety of dynamic phases, including random structures, stripe or combed phases with nematic order, and clogged states. The different regimes can be identified by examining nematic ordering, cluster size, number of pinned particles, and transverse diffusion. In some regimes we find that the pinning can enhance the particle alignment, producing a nonmonotonic signature in the nematic ordering with a maximum at a particular combination of pinning density and drive. The optimal nematic occurs when a sufficient number of particles can be pinned, generating a local shear and leading to what we call a combing effect. At high drives, the combing effect is reduced when the number of pinned particles decreases. For stronger pinning, the particles form a heterogeneous clustered or clogged state that depins into a fluctuating state with high diffusion.

摘要

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