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The Landau-de Gennes approach revisited: A minimal self-consistent microscopic theory for spatially inhomogeneous nematic liquid crystals

机译:Radau-de Gennes方法重新判断:空间不均匀向列液晶的最小自我一致的微观理论

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We design a novel microscopic mean-field theory of inhomogeneous nematic liquid crystals formulated entirely in terms of the tensor order parameter field. It combines the virtues of the Landau-de Gennes approach in allowing both the direction and magnitude of the local order to vary, with a self-consistent treatment of the local free-energy valid beyond the small order parameter limit. As a proof of principle, we apply this theory to the well-studied problem of a colloid dispersed in a nematic liquid crystal by including a tunable wall coupling term. For the two-dimensional case, we investigate the organization of the liquid crystal and the position of the point defects as a function of the strength of the coupling constant. Published by AIP Publishing.
机译:我们设计了一种新颖的甲型液晶的微观平均场理论,其完全以张量序参数领域为完全配制的。 它结合了Landau-de Gennes方法的美德,允许局部顺序的方向和幅度变化,具有自我一致的自由能量,无效超出小订单参数限制。 作为原理的证据,我们通过包括可调谐壁耦合术语将该理论应用于分散在向列液晶中的胶体的良好问题。 对于二维情况,我们研究了液晶的组织和点缺陷的位置作为耦合常数强度的函数。 通过AIP发布发布。

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