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Field-Dependent Tilt And Birefringence Of Electroclinic Liquid Crystals: Theory And Experiment

机译:电倾斜液晶的场相关倾斜和双折射:理论与实验

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摘要

An unresolved issue in the theory of liquid crystals is the molecular basis of the electroclinic effect in the smectic-A phase. Recent x-ray scattering experiments suggest that, in a class of siloxane-containing liquid crystals, an electric field changes a state of disordered molecular tilt in random directions into a state of ordered tilt in one direction. To investigate this issue, we measure the optical tilt and birefringence of these liquid crystals as functions of field and temperature, and we develop a theory for the distribution of molecular orientations under a field. A comparison of theory and experiment confirms that these materials have a disordered distribution of molecular tilt directions that is aligned by an electric field. giving a large electroclinic effect. It also shows that the effective dipole moment, a key parameter in the theory, scales as a power law near the smectic-A-smectic-C transition.
机译:液晶理论中尚未解决的问题是近晶A相中电临床效应的分子基础。最近的X射线散射实验表明,在一类含硅氧烷的液晶中,电场将分子在随机方向上的无序倾斜状态改变为在一个方向上的有序倾斜状态。为了研究这个问题,我们测量了这些液晶的光学倾斜和双折射与场和温度之间的关系,并为场下分子取向的分布发展了一种理论。理论和实验的比较证实,这些材料具有通过电场排列的无序排列的分子倾斜方向。产生较大的电斜度效果。它还表明,有效偶极矩是理论中的一个关键参数,在近晶-A-近晶-C跃迁附近随幂律变化。

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