Chaotic Model for Lévy Walks in Swarming Bacteria

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Abstract

We describe a new mechanism for Lévy walks, explaining the recently observed superdiffusion of swarming bacteria. The model hinges on several key physical properties of bacteria, such as an elongated cell shape, self-propulsion, and a collectively generated regular vortexlike flow. In particular, chaos and Lévy walking are a consequence of group dynamics. The model explains how cells can fine-tune the geometric properties of their trajectories. Experiments confirm the spectrum of these patterns in fluorescently labeled swarming Bacillus subtilis.

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Ariel, G., Be’Er, A., & Reynolds, A. (2017). Chaotic Model for Lévy Walks in Swarming Bacteria. Physical Review Letters, 118(22). https://doi.org/10.1103/PhysRevLett.118.228102

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