Transport barriers to self-propelled particles in fluid flows
Fluid Dynamics
2021-01-20 v2 Chaotic Dynamics
Biological Physics
Abstract
We present theory and experiments demonstrating the existence of invariant manifolds that impede the motion of microswimmers in two-dimensional fluid flows. One-way barriers are apparent in a hyperbolic fluid flow that block the swimming of both smooth-swimming and run-and-tumble \emph{Bacillus subtilis} bacteria. We identify key phase-space structures, called swimming invariant manifolds (SwIMs), that serve as separatrices between different regions of long-time swimmer behavior. When projected into -space, the edges of the SwIMs act as one-way barriers, consistent with the experiments.
Cite
@article{arxiv.2008.03389,
title = {Transport barriers to self-propelled particles in fluid flows},
author = {Simon A. Berman and John Buggeln and David A. Brantley and Kevin Mitchell and Thomas H. Solomon},
journal= {arXiv preprint arXiv:2008.03389},
year = {2021}
}
Comments
11 pages, 8 figures