Microscopic origin of tunable assembly forces in chiral active environments

Fuente: arXiv
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Main Authors: Batton, Clay H., Rotskoff, Grant M.
Format: Preprint
Published: 2023
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author Batton, Clay H.
Rotskoff, Grant M.
author_facet Batton, Clay H.
Rotskoff, Grant M.
contents The fluctuations of a nonequilibrium bath enable dynamics inaccessible to any equilibrium system. Exploiting the driven dynamics of active matter in order to do useful work has become a topic of significant experimental and theoretical interest. Due to the unique modalities controlling self-assembly, the interplay between passive solutes and the particles in an active bath has been studied as a potential driving force to guide assembly of otherwise non-interacting objects. Here, we investigate and characterize the microscopic origins of the attractive and repulsive interactions between passive solutes in an active bath. We show that, while assembly does not occur dynamically for achiral active baths, chiral active particles can produce stable and robust assembly forces. We both explain the observed oscillatory force profile for active Brownian particles and demonstrate that chiral active motion leads to fluxes consistent with an odd diffusion tensor that, when appropriately tuned, produces long-ranged assembly forces.
format Preprint
id arxiv_https___arxiv_org_abs_2310_17763
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Microscopic origin of tunable assembly forces in chiral active environments
Batton, Clay H.
Rotskoff, Grant M.
Soft Condensed Matter
Statistical Mechanics
The fluctuations of a nonequilibrium bath enable dynamics inaccessible to any equilibrium system. Exploiting the driven dynamics of active matter in order to do useful work has become a topic of significant experimental and theoretical interest. Due to the unique modalities controlling self-assembly, the interplay between passive solutes and the particles in an active bath has been studied as a potential driving force to guide assembly of otherwise non-interacting objects. Here, we investigate and characterize the microscopic origins of the attractive and repulsive interactions between passive solutes in an active bath. We show that, while assembly does not occur dynamically for achiral active baths, chiral active particles can produce stable and robust assembly forces. We both explain the observed oscillatory force profile for active Brownian particles and demonstrate that chiral active motion leads to fluxes consistent with an odd diffusion tensor that, when appropriately tuned, produces long-ranged assembly forces.
title Microscopic origin of tunable assembly forces in chiral active environments
topic Soft Condensed Matter
Statistical Mechanics
url https://arxiv.org/abs/2310.17763