Active Model H: Scalar Active Matter in a Momentum-Conserving Fluid
Abstract
We present a continuum theory of self-propelled particles, without alignment interactions, in a momentum-conserving solvent. To address phase separation we introduce a scalar concentration field with advective-diffusive dynamics. Activity creates a contribution to the deviatoric stress, where is odd under time reversal and is the number of spatial dimensions; this causes an effective interfacial tension contribution that is negative for contractile swimmers. We predict that domain growth then ceases at a length scale where diffusive coarsening is balanced by active stretching of interfaces, and confirm this numerically. Thus the interplay of activity and hydrodynamics is highly nontrivial, even without alignment interactions.
Cite
@article{arxiv.1504.07447,
title = {Active Model H: Scalar Active Matter in a Momentum-Conserving Fluid},
author = {Adriano Tiribocchi and Raphael Wittkowski and Davide Marenduzzo and Michael E. Cates},
journal= {arXiv preprint arXiv:1504.07447},
year = {2015}
}
Comments
7 pages, 4 figures