Onset of collective motion in locusts is captured by a minimal model
arXiv:1406.5585 · doi:10.1103/PhysRevE.92.052708
Abstract
We present a minimal model to describe the onset of collective motion seen when a population of locusts are placed in an annular arena. At low densities motion is disordered, while at high densities locusts march in a common direction, which may reverse during the experiment. The data is well-captured by an individual-based model, in which demographic noise leads to the observed density-dependent effects. By fitting the model parameters to equation-free coefficients, we give a quantitative comparison, showing time series, stationary distributions and the mean switching times between states.
5 pages, 4 figures, 1 Table
References in corpus (6)
- Novel type of phase transition in a system of self-driven particles
- Interaction Ruling Animal Collective Behaviour Depends on Topological rather than Metric Distance: Evidence from a Field Study
- The Role of Projection in the Control of Bird Flocks
- Adaptive-network models of swarm dynamics
- Exact results for a noise-induced bistable system
- Theoretical Analysis of Discreteness-Induced Transition in Autocatalytic Reaction Dynamics
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