We investigate the mechanics of an active droplet endowed with internal nematic order and surrounded by an isotropic Newtonian fluid. Using numerical simulations we demonstrate that, due to the interplay between the active stresses and the defective geometry of the nematic director, this system exhibits two of the fundamental functions of living cells: spontaneous division and motility, by means of self-generated hydrodynamic flows. These behaviors can be selectively activated by controlling a single physical parameter, namely, an active variant of the capillary number.

Spontaneous Division and Motility in Active Nematic Droplets

De Simone, Antonio
2014

Abstract

We investigate the mechanics of an active droplet endowed with internal nematic order and surrounded by an isotropic Newtonian fluid. Using numerical simulations we demonstrate that, due to the interplay between the active stresses and the defective geometry of the nematic director, this system exhibits two of the fundamental functions of living cells: spontaneous division and motility, by means of self-generated hydrodynamic flows. These behaviors can be selectively activated by controlling a single physical parameter, namely, an active variant of the capillary number.
2014
Settore ICAR/08 - Scienza delle Costruzioni
Newtonian liquids; Capillary numbers; Defective geometry; Hydrodynamic flows; Nematic director; Nematic droplets; Nematic order; Newtonian fluids; Physical parameters; Drops
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11384/84097
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