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Active Jamming: Self-propelled soft particles at high density

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arxiv 1107.4072 v1 pith:ZMHKJVID submitted 2011-07-20 cond-mat.soft q-bio.CB

Active Jamming: Self-propelled soft particles at high density

classification cond-mat.soft q-bio.CB
keywords phasehighjammedpackingdynamicsfractionparticlesself-propelled
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study numerically the phases and dynamics of a dense collection of self-propelled particles with soft repulsive interactions in two dimensions. The model is motivated by recent in vitro experiments on confluent monolayers of migratory epithelial and endothelial cells. The phase diagram exhibits a liquid phase with giant number fluctuations at low packing fraction and high self-propulsion speed and a jammed phase at high packing fraction and low self-propulsion speed. The dynamics of the jammed phase is controlled by the low frequency modes of the jammed packing.

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    cond-mat.soft 2025-12 conditional novelty 7.0

    Randomly forced, ultrastable dense active matter yields ductilely, with the forcing correlation length controlling a crossover to brittle shear banding, and the input field predicting plastic flow in most regimes.