Locomotion of Active Polymerlike Worms in Porous Media

Fuente: arXiv
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Main Authors: Sinaasappel, Rosa, Fazelzadeh, Mohammad, Hooijschuur, Twan, Di, Qingyi, Jabbari-Farouji, Sara, Deblais, Antoine
Format: Preprint
Published: 2024
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author Sinaasappel, Rosa
Fazelzadeh, Mohammad
Hooijschuur, Twan
Di, Qingyi
Jabbari-Farouji, Sara
Deblais, Antoine
author_facet Sinaasappel, Rosa
Fazelzadeh, Mohammad
Hooijschuur, Twan
Di, Qingyi
Jabbari-Farouji, Sara
Deblais, Antoine
contents We investigate the locomotion of thin, living T. tubifex worms, which display active polymerlike behavior, within quasi-2D arrays of cylindrical pillars, examining varying spatial arrangements and densities. These active worms spread in crowded environments, with a dynamics dependent on both the concentration and arrangement of obstacles. In contrast to passive polymers, our results reveal that in disordered configurations, increasing the pillar density enhances the long-time diffusion of our active polymer-like worms, while we observe the opposite trend in ordered pillar arrays. We found that in disordered media, living worms reptate through available curvilinear tubes, whereas they become trapped within pores of ordered media. Intriguingly, we show that reducing the worm's activity significantly boosts its spread, enabling passive sorting of worms by activity level. Our experimental observations are corroborated through simulations of the tangentially driven polymer model with matched persistence length predicting the same trends.
format Preprint
id arxiv_https___arxiv_org_abs_2407_18805
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Locomotion of Active Polymerlike Worms in Porous Media
Sinaasappel, Rosa
Fazelzadeh, Mohammad
Hooijschuur, Twan
Di, Qingyi
Jabbari-Farouji, Sara
Deblais, Antoine
Soft Condensed Matter
Biological Physics
We investigate the locomotion of thin, living T. tubifex worms, which display active polymerlike behavior, within quasi-2D arrays of cylindrical pillars, examining varying spatial arrangements and densities. These active worms spread in crowded environments, with a dynamics dependent on both the concentration and arrangement of obstacles. In contrast to passive polymers, our results reveal that in disordered configurations, increasing the pillar density enhances the long-time diffusion of our active polymer-like worms, while we observe the opposite trend in ordered pillar arrays. We found that in disordered media, living worms reptate through available curvilinear tubes, whereas they become trapped within pores of ordered media. Intriguingly, we show that reducing the worm's activity significantly boosts its spread, enabling passive sorting of worms by activity level. Our experimental observations are corroborated through simulations of the tangentially driven polymer model with matched persistence length predicting the same trends.
title Locomotion of Active Polymerlike Worms in Porous Media
topic Soft Condensed Matter
Biological Physics
url https://arxiv.org/abs/2407.18805