Anisotropic active Brownian particle with a fluctuating propulsion force
Abstract
The active Brownian particle (ABP) model describes a swimmer, synthetic or living, whose direction of swimming is a Brownian motion. The swimming is due to a propulsion force, and the fluctuations are typically thermal in origin. We present a 2D model where the fluctuations arise from nonthermal noise in a propelling force acting at a single point, such as that due to a flagellum. We take the overdamped limit and find several modifications to the traditional ABP model. Since the fluctuating force causes a fluctuating torque, the diffusion tensor describing the process has a coupling between translational and rotational degrees of freedom. An anisotropic particle also exhibits a mass-dependent noise-induced drift, which does not disappear in the overdamped limit. We show that these effects have measurable consequences for the long-time diffusivity of active particles, in particular adding a contribution that is independent of where the force acts.
Cite
@article{arxiv.2102.11758,
title = {Anisotropic active Brownian particle with a fluctuating propulsion force},
author = {Jean-Luc Thiffeault and Jiajia Guo},
journal= {arXiv preprint arXiv:2102.11758},
year = {2022}
}
Comments
9 pages, 2 figures. LaTeX with RevTeX 4.2 style. Title change and expanded intro