A Landau-de Gennes theory for hard colloidal rods: defects and tactoids
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2016-03-16
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taverne
Abstract
We construct a phenomenological Landau-de Gennes theory for hard colloidal rods by performing an order parameter expansion of the chemical-potential dependent grand potential. By fitting the coefficients to known results of Onsager theory, we are not only able to describe the isotropic-nematic phase transition as function of density, including the well-known density jump, but also the isotropic-nematic planar interface. The resulting theory is applied in calculations of the isotropic core size in a radial hedgehog defect, the density dependence of linear defects of hard rods in square confinement, and the formation of a nematic droplet in an isotropic background.
Keywords
cond-mat.soft, cond-mat.stat-mech, physics.chem-ph, Taverne
Citation
Everts, J, Punter, M, Samin, S, Schoot, P V D & Roij, R V 2016, 'A Landau-de Gennes theory for hard colloidal rods : defects and tactoids', Chemical Physics, vol. 144, 194901. https://doi.org/10.1063/1.4948785