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向列型液晶中向错与单轴各向同性相界面之间的相互作用。

Interaction between a disclination and a uniaxial-isotropic phase interface in a nematic liquid crystal.

作者信息

Shklyaev Oleg E, Fried Eliot

机构信息

Department of Mechanical & Aerospace Engineering, Washington University in St. Louis, Campus Box 1185, St. Louis, MO 63130-4899, USA.

出版信息

J Colloid Interface Sci. 2008 Jan 1;317(1):298-313. doi: 10.1016/j.jcis.2007.09.047. Epub 2007 Sep 21.

Abstract

We consider the interaction between a disclination line of strength +/-1/2 and an interface between the uniaxial and isotropic phases of a nematic liquid crystal. We apply a recently developed set of interface conditions including a configurational force balance which generalizes the Gibbs-Thomson equation to account for the curvature elasticity of the uniaxial phase and the orientation dependence of the interfacial free-energy density. We consider a rectangular vessel containing both phases and a disclination. We formulate a relevant free-boundary problem and use numerical methods to determine equilibrium shapes of the interface. When the interfacial free-energy is constant, the shape of the interface is insensitive to whether the strength of the defect is +1/2 or -1/2 and to rotations of the director field consistent with the boundary conditions. Accounting for the dependence of the interfacial free-energy density on the angle between the interfacial unit normal field and the director field eliminates these degeneracies. In particular, when such dependence is taken into account, different solution branches are found, indicating the presence of a bifurcation. We find also that, depending on the magnitude of the anisotropic contribution to the interfacial free-energy density, the interaction between the disclination and the interface may be repulsive or attractive. When the interaction is repulsive, the disclination line positions itself at an energetically optimal distance adjacent to the interface. Otherwise, the uniaxial phase expels the disclination to the interface where a cusp forms.

摘要

我们考虑强度为±1/2的位错线与向列型液晶单轴相和各向同性相之间的界面之间的相互作用。我们应用一组最近开发的界面条件,其中包括构型力平衡,该平衡将吉布斯-汤姆逊方程推广,以考虑单轴相的曲率弹性和界面自由能密度的取向依赖性。我们考虑一个包含这两个相和一个位错的矩形容器。我们制定一个相关的自由边界问题,并使用数值方法来确定界面的平衡形状。当界面自由能恒定时,界面形状对缺陷强度是+1/2还是-1/2以及与边界条件一致的指向矢场的旋转不敏感。考虑界面自由能密度对界面单位法向场和指向矢场之间夹角的依赖性消除了这些简并性。特别是,当考虑这种依赖性时,会发现不同的解分支,这表明存在分岔。我们还发现,根据界面自由能密度的各向异性贡献的大小,位错与界面之间的相互作用可能是排斥的或吸引的。当相互作用是排斥时,位错线会在与界面相邻的能量最优距离处定位自身。否则,单轴相将位错排斥到形成尖点的界面处。

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