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Lattice Boltzmann And Jones Matrix Calculations For The Determination Of The Director Field Structure In Self-Propelling Nematic Droplets

PHYSICAL REVIEW E(2021)

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摘要
Nematic droplets immersed in aqueous surfactant solutions can show a self-propelled motion induced by a Marangoni flow in the droplet surface. In addition to the self-propulsion, the Marangoni flow induces within the droplet a convective flow which considerably influences the nematic director field of the droplet. We report numerical simulations aiming at the determination of the director field in the self-propelling droplet. The convective flow and the resulting structure of director field are described by a lattice Boltzmann model. The reliability of the obtained structures is proved by subsequent Jones matrix calculations which enable the direct comparison of experimental polarizing microscopy images of self-propelling droplets with calculated images based on the simulated structures.
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关键词
droplets,director field structure,jones matrix calculations,lattice,self-propelling
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