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Main Authors: Lev, Bohdan, Cherniak, Oleksandr
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2508.15037
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author Lev, Bohdan
Cherniak, Oleksandr
author_facet Lev, Bohdan
Cherniak, Oleksandr
contents A new mechanism for micro-swimmer motion in an aquatic environment, which implies light-induced polarization perturbations as a motivation for its motion, is proposed. The mechanism assumes that natural light leads to an enhancement of the non-uniform polarization distribution at the micro-swimmer's surface and also to an enhancement of its surface deformations. The interaction of such non-uniform polarization with free charges of the environment and the mechanical interaction of surface deformations with media flows lead to the directed micro-swimmer motion. The mathematical justification for this mechanism is based on the free energy functional minimization in terms of polarization. The obtained solutions correspond to the translation motion along the micro-swimmer and the rotation of the non-uniform polarization distribution. The estimation of the velocity of micro-swimmer motion, which is based on the hydrodynamics of the active matter, corresponds to the experimentally observed values.
format Preprint
id arxiv_https___arxiv_org_abs_2508_15037
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Light-induced Non-uniform Surface Polarization Evolution as Active Matter Motion Mechanism
Lev, Bohdan
Cherniak, Oleksandr
Soft Condensed Matter
A new mechanism for micro-swimmer motion in an aquatic environment, which implies light-induced polarization perturbations as a motivation for its motion, is proposed. The mechanism assumes that natural light leads to an enhancement of the non-uniform polarization distribution at the micro-swimmer's surface and also to an enhancement of its surface deformations. The interaction of such non-uniform polarization with free charges of the environment and the mechanical interaction of surface deformations with media flows lead to the directed micro-swimmer motion. The mathematical justification for this mechanism is based on the free energy functional minimization in terms of polarization. The obtained solutions correspond to the translation motion along the micro-swimmer and the rotation of the non-uniform polarization distribution. The estimation of the velocity of micro-swimmer motion, which is based on the hydrodynamics of the active matter, corresponds to the experimentally observed values.
title Light-induced Non-uniform Surface Polarization Evolution as Active Matter Motion Mechanism
topic Soft Condensed Matter
url https://arxiv.org/abs/2508.15037