Directed autonomous motion of active Janus particles induced by wall-particle alignment interactions

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Bag, Poulami, Debnath, Tanwi, Nayak, Shubhadip, Ghosh, Pulak K.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911251301400576
author Bag, Poulami
Debnath, Tanwi
Nayak, Shubhadip
Ghosh, Pulak K.
author_facet Bag, Poulami
Debnath, Tanwi
Nayak, Shubhadip
Ghosh, Pulak K.
contents We propose a highly efficient mechanism to rectify the motion of active particles by exploiting particle-wall alignment interactions. Through numerical simulations of active particles' dynamics in a narrow channel, we demonstrate that a slight difference in alignment strength between the top and bottom walls or a small gravitational drag suffices to break upside-down symmetry, leading to rectifying the motion of chiral active particles with over 60% efficiency. In contrast, for achiral swimmers to achieve rectified motion using this protocol, an unbiased fluid flow is necessary that can induce orbiting motion in the particle's dynamics. Thus, an achiral particle subject to Couette flow exhibits spontaneous directed motion due to an upside-down asymmetry in particle-wall alignment interaction. The rectification effects caused by alignment we report are robust against variations in self-propulsion properties, particle's chirality, and the most stable orientation of self-propulsion velocities relative to the walls. Our findings offer insights into controlled active matter transport and could be useful to sort artificial as well as natural microswimmers (such as bacteria and sperm cells) based on their chirality and self-propulsion velocities.
format Preprint
id arxiv_https___arxiv_org_abs_2511_04259
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Directed autonomous motion of active Janus particles induced by wall-particle alignment interactions
Bag, Poulami
Debnath, Tanwi
Nayak, Shubhadip
Ghosh, Pulak K.
Soft Condensed Matter
We propose a highly efficient mechanism to rectify the motion of active particles by exploiting particle-wall alignment interactions. Through numerical simulations of active particles' dynamics in a narrow channel, we demonstrate that a slight difference in alignment strength between the top and bottom walls or a small gravitational drag suffices to break upside-down symmetry, leading to rectifying the motion of chiral active particles with over 60% efficiency. In contrast, for achiral swimmers to achieve rectified motion using this protocol, an unbiased fluid flow is necessary that can induce orbiting motion in the particle's dynamics. Thus, an achiral particle subject to Couette flow exhibits spontaneous directed motion due to an upside-down asymmetry in particle-wall alignment interaction. The rectification effects caused by alignment we report are robust against variations in self-propulsion properties, particle's chirality, and the most stable orientation of self-propulsion velocities relative to the walls. Our findings offer insights into controlled active matter transport and could be useful to sort artificial as well as natural microswimmers (such as bacteria and sperm cells) based on their chirality and self-propulsion velocities.
title Directed autonomous motion of active Janus particles induced by wall-particle alignment interactions
topic Soft Condensed Matter
url https://arxiv.org/abs/2511.04259