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首页> 外文期刊>Journal of computational and theoretical nanoscience >Electric-Field Induced Transitions in a Cholesteric Liquid-Crystal Film with Negative Dielectric Anisotropy
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Electric-Field Induced Transitions in a Cholesteric Liquid-Crystal Film with Negative Dielectric Anisotropy

机译:具有负介电各向异性的胆甾型液晶薄膜中的电场诱导跃迁

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A combination of analytical, numerical, and qualitative methods is used to study competing equilibrium orientational configurations in a liquid-crystal thin film. The material is a cholesteric liquid crystal and has a negative dielectric anisotropy. The system has strong homeotropic anchoring of the liquid-crystal director on the confining substrates and is subject to a voltage applied across the film thickness. A free-energy functional embodies the competing influences of the boundary conditions, the intrinsic chirality of the material, and the electric field. Attention is restricted to director fields that are functions only of the distance across the cell gap. A detailed phase and bifurcation analysis of the two equilibrium configurations of this type is presented; the control parameters are the ratio of the cell gap to the intrinsic pitch of the cholesteric and the applied voltage. The study was motivated by potential technological applications. The phase diagram contains both first-order and second-order transition lines, the former terminating at an isolated point and the latter at a triple point. The voltagedependent nature of the total twist of the director across the cell is revealed and explained, and an effective upper bound is obtained on the ratio of cell gap to pitch for the system to support a simple voltage-driven second-order transition between the two 1-D equilibrium states.
机译:分析,数值和定性方法的组合用于研究液晶薄膜中竞争性平衡取向构型。该材料是胆甾型液晶,并且具有负的介电各向异性。该系统将液晶指向矢牢固地垂直固定在约束基板上,并承受跨膜厚度施加的电压。自由能功能体现了边界条件,材料的固有手性和电场的竞争影响。注意仅限于指向域,该指向域仅是跨像元间隙的距离的函数。给出了这种类型的两种平衡构型的详细的相和分叉分析。控制参数是单元间隙与胆甾型和施加电压的固有节距之比。这项研究的动机是潜在的技术应用。相图包含一阶和二阶过渡线,前者终止于孤立点,后者终止于三点。揭示并解释了指向矢在整个电池上的总扭曲的电压依赖性,并获得了有效的上限,取决于系统的电池间隙与间距之比,以支持系统之间的简单电压驱动的二阶跃迁一维平衡状态。

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