Self-propelled Janus particles in a ratchet: numerical simulations

Brownian transport of self-propelled overdamped microswimmers (like Janus particles) in a two-dimensional periodically compartmentalized channel is numerically investigated for different compartment geometries, boundary collisional dynamics, and particle rotational diffusion. The resulting time-corr...

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Veröffentlicht in:Physical review letters 2013-06, Vol.110 (26), p.268301-268301, Article 268301
Hauptverfasser: Ghosh, Pulak K, Misko, Vyacheslav R, Marchesoni, Fabio, Nori, Franco
Format: Artikel
Sprache:eng
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Zusammenfassung:Brownian transport of self-propelled overdamped microswimmers (like Janus particles) in a two-dimensional periodically compartmentalized channel is numerically investigated for different compartment geometries, boundary collisional dynamics, and particle rotational diffusion. The resulting time-correlated active Brownian motion is subject to rectification in the presence of spatial asymmetry. We prove that ratcheting of Janus particles can be orders of magnitude stronger than for ordinary thermal potential ratchets and thus experimentally accessible. In particular, autonomous pumping of a large mixture of passive particles can be induced by just adding a small fraction of Janus particles.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.110.268301