Large-scale dynamics in visual quorum sensing chiral suspensions

Fuente: arXiv
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Auteurs principaux: Zhou, Yuxin, Yin, Qingqing, Nayak, Shubhadip, Bag, Poulami, Ghosh, Pulak K., Li, Yunyun, Marchesoni, Fabio
Format: Preprint
Publié: 2025
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author Zhou, Yuxin
Yin, Qingqing
Nayak, Shubhadip
Bag, Poulami
Ghosh, Pulak K.
Li, Yunyun
Marchesoni, Fabio
author_facet Zhou, Yuxin
Yin, Qingqing
Nayak, Shubhadip
Bag, Poulami
Ghosh, Pulak K.
Li, Yunyun
Marchesoni, Fabio
contents Motility induced phase separation is an efficient aggregation mechanism of active matter, yet biological systems exhibit richer organization through communication among constituents. We investigate suspensions of active particles that change chirality when neighbor density within their visual cone exceeds a threshold, a communication based non-reciprocal interaction akin to quorum sensing. Tuning the visual cone triggers programmable transitions: from disorder to phase separation to hyper-uniformity. Notably, phase separation triggers large-scale circulation, with robust edge currents persistently flowing around dense clusters, while particle distributions inside become effectively hyper-uniform. These are genuine non-reciprocal effects which occur even in the absence of steric interactions. Remarkably, in active-passive mixtures, only 5% quorum-sensing chiral particles suffice to induce collective circulation. Thus, simple perception-based rules can generate life-like order, offering design principles for programmable active materials and micro-robotic swarms.
format Preprint
id arxiv_https___arxiv_org_abs_2508_11254
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Large-scale dynamics in visual quorum sensing chiral suspensions
Zhou, Yuxin
Yin, Qingqing
Nayak, Shubhadip
Bag, Poulami
Ghosh, Pulak K.
Li, Yunyun
Marchesoni, Fabio
Soft Condensed Matter
Applied Physics
Motility induced phase separation is an efficient aggregation mechanism of active matter, yet biological systems exhibit richer organization through communication among constituents. We investigate suspensions of active particles that change chirality when neighbor density within their visual cone exceeds a threshold, a communication based non-reciprocal interaction akin to quorum sensing. Tuning the visual cone triggers programmable transitions: from disorder to phase separation to hyper-uniformity. Notably, phase separation triggers large-scale circulation, with robust edge currents persistently flowing around dense clusters, while particle distributions inside become effectively hyper-uniform. These are genuine non-reciprocal effects which occur even in the absence of steric interactions. Remarkably, in active-passive mixtures, only 5% quorum-sensing chiral particles suffice to induce collective circulation. Thus, simple perception-based rules can generate life-like order, offering design principles for programmable active materials and micro-robotic swarms.
title Large-scale dynamics in visual quorum sensing chiral suspensions
topic Soft Condensed Matter
Applied Physics
url https://arxiv.org/abs/2508.11254