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Liquid crystal molecular orientation in photonic liquid crystal fibers with photopolymer layers

机译:具有光敏聚合物层的光子液晶纤维中的液晶分子取向

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Photonic liquid crystal fibers (PLCFs) combine unique properties of photonic crystal fibers and liquid crystals (LCs). Liquid crystal molecules orientation within the PLCFs has crucial impact on their optical properties since it determines the radial refractive index profile of the LC-filled micro-holes. There are many techniques used for LC molecules orientation control, but most of them are not suitable for application in microstructured fibers characterized by holes with diameters in the order of few micrometers. It seems that the only method that could be applied in PLCFs is using of thin photopolymer layers, in which surface anisotropy can be induced in the way of photochemical reactions. In this paper we present preliminary experimental results of the photoinduced molecular alignment in the PLCF induced by a thin polyvinylcinnamate (PVCi) film irradiated with the linearly polarized ultraviolet light.
机译:光子液晶光纤(PLCF)结合了光子晶体光纤和液晶(LC)的独特特性。 PLCF中液晶分子的取向对其光学性能具有至关重要的影响,因为它决定了填充LC的微孔的径向折射率分布。有许多技术可用于控制LC分子的方向,但大多数技术都不适合用于直径为几微米量级的微结构纤维。似乎唯一可以应用于PLCF的方法是使用薄光敏聚合物层,其中可以通过光化学反应的方式诱发表面各向异性。在本文中,我们介绍了由线性偏振紫外光照射的聚乙烯基肉桂酸酯(PVCi)薄膜在PLCF中进行光诱导分子排列的初步实验结果。

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