Pattern Formation and Flocking for Particles Near the Jamming Transition on Resource Gradient Substrates

Fuente: arXiv
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Autori principali: Varga, L., Libal, A., Reichhardt, C., Reichhardt, C. J. O.
Natura: Preprint
Pubblicazione: 2022
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author Varga, L.
Libal, A.
Reichhardt, C.
Reichhardt, C. J. O.
author_facet Varga, L.
Libal, A.
Reichhardt, C.
Reichhardt, C. J. O.
contents We numerically examine a bidisperse system of active and passive particles coupled to a resource substrate. The active particles deplete the resource at a fixed rate and move toward regions with higher resources, while all of the particles interact sterically with each other. We show that at high densities, this system exhibits a rich variety of pattern forming phases along with directed motion or flocking as a function of the relative rates of resource absorption and consumption as well as the active to passive particle ratio. These include partial phase separation into rivers of active particles flowing through passive clusters, strongly phase separated states where the active particles induce crystallization of the passive particles, mixed jammed states, and fluctuating mixed fluid phases. For higher resource recovery rates, we demonstrate that the active particles can undergo motility induced phase separation, while at high densities, there can be a coherent flock containing only active particles or a solid mixture of active and passive particles. The directed flocking motion typically shows a transient in which the flow switches among different directions before settling into one direction, and there is a critical density below which flocking does not occur. We map out the different phases as function of system density, resource absorption and recovery rates,and the ratio of active to passive particles.
format Preprint
id arxiv_https___arxiv_org_abs_2207_02914
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Pattern Formation and Flocking for Particles Near the Jamming Transition on Resource Gradient Substrates
Varga, L.
Libal, A.
Reichhardt, C.
Reichhardt, C. J. O.
Soft Condensed Matter
Statistical Mechanics
We numerically examine a bidisperse system of active and passive particles coupled to a resource substrate. The active particles deplete the resource at a fixed rate and move toward regions with higher resources, while all of the particles interact sterically with each other. We show that at high densities, this system exhibits a rich variety of pattern forming phases along with directed motion or flocking as a function of the relative rates of resource absorption and consumption as well as the active to passive particle ratio. These include partial phase separation into rivers of active particles flowing through passive clusters, strongly phase separated states where the active particles induce crystallization of the passive particles, mixed jammed states, and fluctuating mixed fluid phases. For higher resource recovery rates, we demonstrate that the active particles can undergo motility induced phase separation, while at high densities, there can be a coherent flock containing only active particles or a solid mixture of active and passive particles. The directed flocking motion typically shows a transient in which the flow switches among different directions before settling into one direction, and there is a critical density below which flocking does not occur. We map out the different phases as function of system density, resource absorption and recovery rates,and the ratio of active to passive particles.
title Pattern Formation and Flocking for Particles Near the Jamming Transition on Resource Gradient Substrates
topic Soft Condensed Matter
Statistical Mechanics
url https://arxiv.org/abs/2207.02914