article Open AccessTop 10% cited
Spontaneous flow transition in active polar gels
Europhysics Letters (EPL) · 2005 · Vol. 70(3) · pp. 404–410
Raphaël Voituriez✉(Institut Curie)Jean‐François Joanny(Centre National de la Recherche Scientifique)Jacques Prost(Institut Curie)
Abstract
We study theoretically the effects of confinement on active polar gels such as the actin network of eukaryotic cells. Using generalized hydrodynamics equations derived for active gels, we predict, in the case of quasi one-dimensional geometry, a spontaneous flow transition from a homogeneously polarized immobile state for small thicknesses, to a perturbed flowing state for larger thicknesses. The transition is not driven by an external field but by the activity of the system. We suggest several possible experimental realizations.
Micro and Nano RoboticsAdvanced Thermodynamics and Statistical MechanicsCellular Mechanics and InteractionsPolarFlow (mathematics)VortexMechanicsPhysicsField (mathematics)ActinCondensed matter physicsChemical physicsMaterials science
Citations
350
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4.69
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Cited by
Hydrodynamics of soft active matter
Reviews of Modern Physics · 2013 · 3,980 citations
References
<i>The Physics of Liquid Crystals</i>
Physics Today · 1995 · 9,744 citations
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