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Collective motion of self-propelled particles interacting without cohesion

Physical Review E · 2008 · Vol. 77(4) · pp. 046113–046113
Hugues ChatéFrancesco GinelliGuillaume GrégoireFranck Raynaud

Abstract

We present a comprehensive study of Vicsek-style self-propelled particle models in two and three space dimensions. The onset of collective motion in such stochastic models with only local alignment interactions is studied in detail and shown to be discontinuous (first-order-like). The properties of the ordered, collectively moving phase are investigated. In a large domain of parameter space including the transition region, well-defined high-density and high-order propagating solitary structures are shown to dominate the dynamics. Far enough from the transition region, on the other hand, these objects are not present. A statistically homogeneous ordered phase is then observed, which is characterized by anomalously strong density fluctuations, superdiffusion, and strong intermittency.

Diffusion and Search DynamicsMicro and Nano RoboticsStochastic processes and statistical mechanicsIntermittencyStatistical physicsCollective motionPhysicsPhase transitionCollective behaviorStochastic dynamicsMotion (physics)Cohesion (chemistry)Classical mechanics

Funding

  • European Commission
  • Agence Nationale de la Recherche
Citations
666
FWCI
7.17
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References
60
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Annals of Physics · 2005 · 984 citations
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Journal of Theoretical Biology · 2002 · 2,144 citations
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