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      Theoretical analysis of nanoparticle-induced homeotropic alignment in nematic liquid crystals

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          Abstract

          A theoretical analysis of homeotropic alignment induced by nanoparticles (NPs) in a nematic liquid crystal (NLC) sample cell is presented. It is found that such alignment on the surface of a NP causes a change in the orientation of the molecular director near the surface, which in turn induces variations in the elastic constants and free energy. The induced NLC properties allow coupling between nearby NPs, mediated by the NLC molecules. The rotation of the coupled NPs close to the substrate tends to induce a long-range orientation of the NLC molecular director, leading to modification in the alignment at the interface of NLC and substrate which induces the orientation from homogeneous (planar) to homeotropic (vertical) in the bulk material.

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          Journal
          2015-10-27
          Article
          1510.08166
          1e8c49eb-34e5-4054-9ebb-b8f43b49e224

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          physics.optics cond-mat.soft

          Condensed matter,Optical materials & Optics
          Condensed matter, Optical materials & Optics

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