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arxiv: 1011.1134 · v1 · pith:KUQIXCZ7new · submitted 2010-11-04 · ❄️ cond-mat.soft · nlin.AO

Generic Conditions for Hydrodynamic Synchronization

classification ❄️ cond-mat.soft nlin.AO
keywords synchronizationhydrodynamicarbitraryconditionsrotorsactivelybehindbiological
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Synchronization of actively oscillating organelles such as cilia and flagella facilitates self-propulsion of cells and pumping fluid in low Reynolds number environments. To understand the key mechanism behind synchronization induced by hydrodynamic interaction, we study a model of rigid-body rotors making fixed trajectories of arbitrary shape under driving forces that are arbitrary functions of the phases. For a wide class of geometries, we obtain the necessary and sufficient conditions for synchronization of a pair of rotors. We also find a novel synchronized pattern with a time-dependent phase shift. Our results shed light on the role of hydrodynamic interactions in biological systems, and could help in developing efficient mixing and transport strategies in microfluidic devices.

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