Publication | Closed Access
Collective Motion of Self-Propelled Particles: Kinetic Phase Transition in One Dimension
272
Citations
27
References
1999
Year
EngineeringPhysicsMechanicsSelf-assemblyFluid MechanicsQuantum Field TheoryApplied PhysicsSymmetry Broken StateSymmetry (Physics)Collective MotionKinetic Phase TransitionKinetics (Physics)Self-propulsionActive FluidBiophysicsNew Continuum TheoryParticle-laden FlowSelf-propelled Particles
We demonstrate that a system of self-propelled particles exhibits spontaneous symmetry breaking and self-organization in one dimension, in contrast with previous analytical predictions. To explain this surprising result we derive a new continuum theory that can account for the development of the symmetry broken state and belongs to the same universality class as the discrete self-propelled particle model.
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