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Updated: Mar 21, 2026

Analysis of Motility Patterns of Stentor During and After Oral Apparatus Regeneration Using Cell Tracking
Published on: April 26, 2021
Density-independent transient caging in the high-density phase of motility-induced phase separation
Toranosuke Umemura1, Issei Sakai1, Takuma Akimoto1
1Tokyo University of Science, Department of Physics and Astronomy, Noda, Chiba 278-8510, Japan.
Abstract:
We investigate the nonequilibrium dynamics of active matter using a two-dimensional active Brownian particles model. In these systems, self-propelled particles undergo motility-induced phase separation (MIPS), spontaneously segregating into dense and dilute phases. We find that in the high-density phase, local particle mobility exhibits transient caging, with diffusivity remaining unchanged despite variations in the global system density. As global density increases further, the system undergoes a transition to a solidlike state through an intermediate regime with pronounced dynamical arrest. Our findings identify a distinct high-density regime characterized by transient caging and dynamical slowing down in a monodisperse active system, shedding light on the connection between MIPS and nonequilibrium arrest.
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