Brownian dynamics of a microswimmer
Fluid Dynamics
2008-05-08 v1 Biological Physics
Abstract
We report on dynamic properties of a simple model microswimmer composed of three spheres and propelling itself in a viscous fluid by spinning motion of the spheres under zero net torque constraint. At a fixed temperature and increasing the spinning frequency, the swimmer demonstrates a transition from dissipation-dominated to a pumping-dominated motion regime characterized by negative effective friction coefficient. In the limit of high frequencies, the diffusion of the swimmer can be described by a model of an active particle with constant velocity.
Cite
@article{arxiv.0709.0792,
title = {Brownian dynamics of a microswimmer},
author = {Vladimir Lobaskin and Dmitry Lobaskin and Igor M. Kulic},
journal= {arXiv preprint arXiv:0709.0792},
year = {2008}
}
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