English

Phase Separation in Active Binary Mixtures With Chemical Reaction

Soft Condensed Matter 2025-05-05 v1 Statistical Mechanics

Abstract

We study motility-induced phase separation~(MIPS) in active AB binary mixtures undergoing the chemical reaction ABA \rightleftharpoons B. Starting from the evolution equations for the density fields ρi(r,t)\rho_i(\vec r, t) describing MIPS, we phenomenologically incorporate the effects of the reaction through the reaction rate Γ\Gamma into the equations. The steady-state domain morphologies depend on Γ\Gamma and the relative activity of the species, Δ\Delta. For a sufficiently large Γ\Gamma and Δ1\Delta\ne 1, the more active component of the mixture forms a droplet morphology. We characterize the morphology of domains by calculating the equal-time correlation function C(r,t)C(r, t) and the structure factor S(k,t)S(k, t), exhibiting scaling violation. The average domain size, L(t)L(t), follows a diffusive growth as L(t)t1/3L(t)\sim t^{1/3} before reaching the steady state domain size, LssL_{\rm ss}. Additionally, LssL_{\rm ss} shows the scaling relation LssΓ1/4L_{\rm ss}\sim\Gamma^{-1/4}, independent of Δ\Delta.

Keywords

Cite

@article{arxiv.2504.11806,
  title  = {Phase Separation in Active Binary Mixtures With Chemical Reaction},
  author = {Sayantan Mondal and Prasenjit Das},
  journal= {arXiv preprint arXiv:2504.11806},
  year   = {2025}
}

Comments

16 Pages, 7 Figures, Accepted to Soft Matter

R2 v1 2026-06-28T23:00:05.435Z