Flowing Active Liquids in a Pipe: Hysteretic Response of Polar Flocks to External Fields

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Abstract

We investigate the response of colloidal flocks to external fields. We first show that individual colloidal rollers align with external flows, as would a classical spin with magnetic fields. Assembling polar active liquids from colloidal rollers, we experimentally demonstrate their hysteretic response: Confined colloidal flocks can proceed against external flows. We theoretically explain this collective robustness, using an active hydrodynamic description, and show how orientational elasticity and confinement protect the direction of collective motion. Finally, we exploit the intrinsic bistability of confined active flows to devise self-sustained microfluidic oscillators.

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Morin, A., & Bartolo, D. (2018). Flowing Active Liquids in a Pipe: Hysteretic Response of Polar Flocks to External Fields. Physical Review X, 8(2). https://doi.org/10.1103/PhysRevX.8.021037

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