首页> 外文期刊>The European physical journal, E. Soft matter >Static and dynamic electro-optic properties of a SmC* phase in surface stabilized geometry and dispersed in the polymer matrix
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Static and dynamic electro-optic properties of a SmC* phase in surface stabilized geometry and dispersed in the polymer matrix

机译:表面稳定几何形状中的SmC *相的静态和动态电光特性,并分散在聚合物基质中

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Comparative electro-optical measurements have been made on a ferroelectric liquid crystal (FLC) in surface stabilized geometry and confined to an ellipsoidal cavity within a polymer matrix. The static and dynamic electro-optical characteristics were measured for both systems and show qualitatively similar behaviours. A fast switching and important bistability were observed and characterized as a function of the applied electric field strength. The switching time between the two stable states of the surface stabilized cell was found to be longer than that found for the composite films. We argue that the faster switching dynamic of the FLC in cavities is due to the enhance of the rotational mobility of the molecules, probably (and partly) because of the "soft" anchoring character of the molecules at the cavity walls. Using a collective switching model in the high field regime, which assume a linear coupling between the spontaneous polarization and the local cavity electric field, we give an estimate of the rotational viscosity of the FLC molecules in the droplets.
机译:已经在铁电液晶(FLC)上以表面稳定的几何形状进行了比较电光测量,并将其限制在聚合物基质内的椭圆形腔中。对这两个系统的静态和动态电光特性均进行了测量,并显示出本质上相似的行为。观察到快速切换和重要的双稳性,并将其表征为施加的电场强度的函数。发现表面稳定电池的两个稳定状态之间的切换时间长于复合膜的切换时间。我们认为,腔中FLC的更快切换动力学是由于分子旋转运动性的增强,可能(部分是由于分子在腔壁处的“软”锚定特性)引起的。使用在高场状态下的集体转换模型,该模型假设自发极化和局部腔电场之间存在线性耦合,我们可以估算出液滴中FLC分子的旋转粘度。

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