Confinement-induced collective motion in suspensions of run-and-tumble particles

Fuente: arXiv
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Autori principali: Martín-Roca, José, Ortiz, Daniel Escobar, Valeriani, Chantal, Serna, Horacio
Natura: Preprint
Pubblicazione: 2025
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author Martín-Roca, José
Ortiz, Daniel Escobar
Valeriani, Chantal
Serna, Horacio
author_facet Martín-Roca, José
Ortiz, Daniel Escobar
Valeriani, Chantal
Serna, Horacio
contents Collective motion is ubiquitous in active systems at all length and time scales. The mechanisms behind such collective motion usually are alignment interactions between active particles, effective alignment after collisions between agents or symmetry-breaking fluctuations induced by passive species in active suspensions. In this article, we introduce a new type of collective motion in the shape of a traveling band induced purely by confinement, where no explicit or effective alignment are prescribed among active agents. We study a suspension of run-and-tumble particles confined in microchannels comprising asymmetric boundaries: one flat wall and one array of funnel-like obstacles. We study the phase behavior of the confined active suspension upon changes in the packing fraction and the persistence length to define the stability region of the traveling band. We characterize the traveling band structurally and dynamically and study its stability with respect to the tilt angle of the obstacles. Lastly, we describe the mechanism of motion of the band, which resembles the tracked locomotion of some heavy vehicles like tractors, finding that a counter-flux of active particles in the lower part of the band, explained in terms of source-sink and vacancy diffusion mechanisms, is the facilitator of the traveling band and sustains its motion. We name this new collective phenomenon confinement-induced tracked locomotion
format Preprint
id arxiv_https___arxiv_org_abs_2511_08067
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Confinement-induced collective motion in suspensions of run-and-tumble particles
Martín-Roca, José
Ortiz, Daniel Escobar
Valeriani, Chantal
Serna, Horacio
Soft Condensed Matter
Collective motion is ubiquitous in active systems at all length and time scales. The mechanisms behind such collective motion usually are alignment interactions between active particles, effective alignment after collisions between agents or symmetry-breaking fluctuations induced by passive species in active suspensions. In this article, we introduce a new type of collective motion in the shape of a traveling band induced purely by confinement, where no explicit or effective alignment are prescribed among active agents. We study a suspension of run-and-tumble particles confined in microchannels comprising asymmetric boundaries: one flat wall and one array of funnel-like obstacles. We study the phase behavior of the confined active suspension upon changes in the packing fraction and the persistence length to define the stability region of the traveling band. We characterize the traveling band structurally and dynamically and study its stability with respect to the tilt angle of the obstacles. Lastly, we describe the mechanism of motion of the band, which resembles the tracked locomotion of some heavy vehicles like tractors, finding that a counter-flux of active particles in the lower part of the band, explained in terms of source-sink and vacancy diffusion mechanisms, is the facilitator of the traveling band and sustains its motion. We name this new collective phenomenon confinement-induced tracked locomotion
title Confinement-induced collective motion in suspensions of run-and-tumble particles
topic Soft Condensed Matter
url https://arxiv.org/abs/2511.08067