Braiding a flock: winding statistics of interacting flying spins
arXiv:1501.07879 · doi:10.1103/PhysRevLett.114.258101
Abstract
When animal groups move coherently in the form of a flock, their trajectories are not all parallel, the individuals exchange their position in the group. In this Letter we introduce a measure of this mixing dynamics, which we quantify as the winding of the braid formed from the particle trajectories. Building on a paradigmatic flocking model we numerically and theoretically explain the winding statistics, and show that it is predominantly set by the global twist of the trajectories as a consequence of a spontaneous symmetry breaking.
References in corpus (5)
- Novel type of phase transition in a system of self-driven particles
- Hydrodynamic equations for self-propelled particles: microscopic derivation and stability analysis
- Pattern formation in self-propelled particles with density-dependent motility
- Diffusion of individual birds in starling flocks
- Density regulation in strictly metric-free swarms