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Surfing and crawling macroscopic active particles under strong confinement

ORAL

Abstract

We study two types of active (self-propelled) macroscopic particles under confinement: camphor surfers and hexbug crawlers, using a combined experimental, theoretical, and numerical approach. Unlike widely studied microscopic active particles and swimmers, where thermal forces are often important and inertia is negligible, our macroscopic particles exhibit complex dynamics due expressly to active non-thermal noise combined with inertial effects. Strong confinement induces accumulation at a finite distance within the boundary and gives rise to three distinguishable dynamical states; both depending on activity and inertia. These surprisingly complex dynamics arise already at the single particle level -- highlighting the importance of inertia in macroscopic active matter.

Presenters

  • Wylie Ahmed

    California State University, Fullerton, Physics, California State University, Fullerton

Authors

  • Marco Leoni

    CNRS, IJC Lab, Universite Paris-Saclay

  • Matteo Paoluzzi

    Physics, Universitat de Barcelona

  • Sarah Eldeen

    California State University, Fullerton, Physics, California State University, Fullerton

  • Anthony Estrada

    California State University, Fullerton, Physics, California State University, Fullerton

  • Wylie Ahmed

    California State University, Fullerton, Physics, California State University, Fullerton