In the active Ising model, increasing alignment strength pins interfaces between traveling domains via resonating particle motion, causing macroscopic pinned regions that suppress polar order when diffusion is much slower than self-propulsion.
Namely, all lattice sites are occupied by+ particles of mean densityρ0 except for those within a(2 × l) rectangle
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2024 1verdicts
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Motility-Induced Pinning in Flocking System with Discrete Symmetry
In the active Ising model, increasing alignment strength pins interfaces between traveling domains via resonating particle motion, causing macroscopic pinned regions that suppress polar order when diffusion is much slower than self-propulsion.