Segregation and cooperation in active colloidal binary mixtures

Fuente: arXiv
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Main Authors: Alvarez, Laura, Sesé-Sansa, Elena, Levis, Demian, Pagonabarraga, Ignacio, Isa, Lucio
Format: Preprint
Published: 2025
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author Alvarez, Laura
Sesé-Sansa, Elena
Levis, Demian
Pagonabarraga, Ignacio
Isa, Lucio
author_facet Alvarez, Laura
Sesé-Sansa, Elena
Levis, Demian
Pagonabarraga, Ignacio
Isa, Lucio
contents The complex interactions underlying collective motion in biological systems give rise to emergent behaviours such as flocking, sorting, and cooperative transport. These dynamics often involve species with different motilities coordinating movement to optimize navigation and survival. Synthetic analogues based on active colloids offer a controlled platform to explore such behaviours, yet most experimental realizations remain limited to monodisperse systems or mixtures of passive and active particles. Here, we investigate dense binary mixtures of active Janus colloids with distinct motilities and independently tunable alignment, actuated by AC electric fields. We demonstrate experimentally and numerically that both species form highly dynamic polar clusters, with alignment emerging independently of propulsion speed. In mixed populations, interspecies interactions lead to effective segregation and cooperative motion, including transient enhancement of slower particle motility. Our results reveal how motility contrast and alignment combine to drive self-organization in active mixtures, offering strategies for designing reconfigurable materials with collective functionalities.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15188
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Segregation and cooperation in active colloidal binary mixtures
Alvarez, Laura
Sesé-Sansa, Elena
Levis, Demian
Pagonabarraga, Ignacio
Isa, Lucio
Soft Condensed Matter
The complex interactions underlying collective motion in biological systems give rise to emergent behaviours such as flocking, sorting, and cooperative transport. These dynamics often involve species with different motilities coordinating movement to optimize navigation and survival. Synthetic analogues based on active colloids offer a controlled platform to explore such behaviours, yet most experimental realizations remain limited to monodisperse systems or mixtures of passive and active particles. Here, we investigate dense binary mixtures of active Janus colloids with distinct motilities and independently tunable alignment, actuated by AC electric fields. We demonstrate experimentally and numerically that both species form highly dynamic polar clusters, with alignment emerging independently of propulsion speed. In mixed populations, interspecies interactions lead to effective segregation and cooperative motion, including transient enhancement of slower particle motility. Our results reveal how motility contrast and alignment combine to drive self-organization in active mixtures, offering strategies for designing reconfigurable materials with collective functionalities.
title Segregation and cooperation in active colloidal binary mixtures
topic Soft Condensed Matter
url https://arxiv.org/abs/2506.15188