Issue 4, 2024

How reciprocity impacts ordering and phase separation in active nematics?

Abstract

Active nematics undergo spontaneous symmetry breaking and show phase separation instability. Within the prevailing notion that macroscopic properties depend only on symmetries and conservation laws, different microscopic models are used out of convenience. Here, we test this notion carefully by analyzing three different microscopic models of apolar active nematics. They share the same symmetry but differ in implementing reciprocal or non-reciprocal interactions, including a Vicsek-like implementation. We show how such subtle differences in microscopic realization determine if the ordering transition is continuous or first order. Despite the difference in the type of phase transition, all three models exhibit fluctuation-dominated phase separation and quasi-long-range order in the nematic phase.

Graphical abstract: How reciprocity impacts ordering and phase separation in active nematics?

Article information

Article type
Paper
Submitted
18 Jun 2023
Accepted
12 Dec 2023
First published
15 Dec 2023

Soft Matter, 2024,20, 788-795

How reciprocity impacts ordering and phase separation in active nematics?

A. Sinha and D. Chaudhuri, Soft Matter, 2024, 20, 788 DOI: 10.1039/D3SM00795B

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