English

Chemotaxis of artificial microswimmers in active density waves

Soft Condensed Matter 2016-10-12 v1

Abstract

Living microorganisms are capable of a tactic response to external stimuli by swimming towards or away from the stimulus source; they do so by adapting their tactic signal transduction pathways to the environment. Their self-motility thus allows them to swim against a traveling tactic wave, whereas a simple fore-rear asymmetry argument would suggest the opposite. Their biomimetic counterpart, the artificial microswimmers, also propel themselves by harvesting kinetic energy from an active medium, but, in contrast, lack the adaptive capacity. Here we investigate the transport of artificial swimmers subject to traveling active waves and show, by means of analytical and numerical methods, that self-propelled particles can actually diffuse in either direction with respect to the wave, depending on its speed and waveform. Moreover, chiral swimmers, which move along spiraling trajectories, may diffuse preferably in a direction perpendicular to the active wave. Such a variety of tactic responses is explained by the modulation of the swimmer's diffusion inside traveling active pulses.

Keywords

Cite

@article{arxiv.1606.09559,
  title  = {Chemotaxis of artificial microswimmers in active density waves},
  author = {Alexander Geiseler and Peter Hänggi and Fabio Marchesoni and Colm Mulhern and Sergey Savel'ev},
  journal= {arXiv preprint arXiv:1606.09559},
  year   = {2016}
}

Comments

11 pages, 4 figures