Dynamic clustering in active colloidal suspensions with chemical signaling
Abstract
In this paper, we explore experimentally the phase behavior of a dense active suspension of self- propelled colloids. In addition to a solid-like and a gas-like phase observed for high and low densities, a novel cluster phase is reported at intermediate densities. This takes the form of a stationary assembly of dense aggregates, with an average size which grows with activity as a linear function of the self-propelling velocity. While different possible scenarii can be considered to account for these observations - such as a generic velocity weakening instability recently put forward -, we show that the experimental results are reproduced by a chemotactic aggregation mechanism, originally introduced to account for bacterial aggregation, and accounting here for diffusiophoretic chemical interaction between colloidal swimmers.
Cite
@article{arxiv.1202.6264,
title = {Dynamic clustering in active colloidal suspensions with chemical signaling},
author = {I. Theurkauff and C. Cottin-Bizonne and J. Palacci and C. Ybert and L. Bocquet},
journal= {arXiv preprint arXiv:1202.6264},
year = {2015}
}
Comments
supplementary video :http:// www-lpmcn.univ-lyon1.fr/~lbocquet/Movie-Theurkauff-SI.avi