Universal transport of active colloids with sensory delay in motility landscapes

Fuente: arXiv
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Main Authors: Garcés, Adrià, Töpfer, Ueli, Isa, Lucio, Levis, Demian, Pagonabarraga, Ignacio
Format: Preprint
Published: 2026
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author Garcés, Adrià
Töpfer, Ueli
Isa, Lucio
Levis, Demian
Pagonabarraga, Ignacio
author_facet Garcés, Adrià
Töpfer, Ueli
Isa, Lucio
Levis, Demian
Pagonabarraga, Ignacio
contents We experimentally, numerically and analytically explore the diffusive transport of active colloidal particles with sensory delay, navigating motility landscapes in which the self-propulsion speed depends on space. We show how the transport properties can be obtained by replacing the space dependence of the self-propulsion speed by a dynamical stochastic switching process in the absence of delay, and extend the theory for systems with finite delayed responses. We obtain analytical results for the mean square displacement and the effective diffusion coefficient which accurately predict experimental measurements and numerical simulations across multiple scales. We show how, within the regime of validity of the delay-extended theory, density patterns and effective diffusion obey universal scaling forms. Our work provides minimal framework describing the transport properties of active swimmers with internal adaptation dynamics in motility landscapes.
format Preprint
id arxiv_https___arxiv_org_abs_2604_25745
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Universal transport of active colloids with sensory delay in motility landscapes
Garcés, Adrià
Töpfer, Ueli
Isa, Lucio
Levis, Demian
Pagonabarraga, Ignacio
Statistical Mechanics
Soft Condensed Matter
We experimentally, numerically and analytically explore the diffusive transport of active colloidal particles with sensory delay, navigating motility landscapes in which the self-propulsion speed depends on space. We show how the transport properties can be obtained by replacing the space dependence of the self-propulsion speed by a dynamical stochastic switching process in the absence of delay, and extend the theory for systems with finite delayed responses. We obtain analytical results for the mean square displacement and the effective diffusion coefficient which accurately predict experimental measurements and numerical simulations across multiple scales. We show how, within the regime of validity of the delay-extended theory, density patterns and effective diffusion obey universal scaling forms. Our work provides minimal framework describing the transport properties of active swimmers with internal adaptation dynamics in motility landscapes.
title Universal transport of active colloids with sensory delay in motility landscapes
topic Statistical Mechanics
Soft Condensed Matter
url https://arxiv.org/abs/2604.25745