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Dispersion properties of transverse anisotropic liquid crystal core photonic crystal fibers

机译:横向各向异性液晶芯光子晶体光纤的色散特性

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The dispersion properties of liquid crystal core photonic crystal fibers for different core diameters have been calculated by a full vectorial finite difference method. In calculations, air holes are assumed to be arranged in a regular hexagonal array in fused silica and a central hole is filled with liquid crystal to create a core. In this study, three types of transverse anisotropic configurations, where liquid crystal molecules are oriented in a transverse plane, and a planar configuration, where liquid crystal molecules are oriented in a propagation direction, are considered. The large changes of the dispersion properties are found when the orientation of the liquid crystal molecules is changed from a planar configuration to a uniform configuration, where all molecules are oriented in the same direction in a transverse plane. Since the orientation of liquid crystal molecules may be controlled by applying an electric field, it could be utilized for various applications including the spectral control of supercontinuum generation. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过全矢量有限差分法计算了不同芯径的液晶芯光子晶体光纤的色散特性。在计算中,假设在熔融石英中将气孔排列成规则的六边形阵列,并且将中心孔填充有液晶以形成芯。在这项研究中,考虑了三种类型的横向各向异性构型,其中液晶分子在横向平面中取向,以及平面构型,其中液晶分子在传播方向上取向。当液晶分子的取向从平面构型改变为均匀构型时,发现分散特性的大变化,其中所有分子在横向平面中以相同方向取向。由于可以通过施加电场来控制液晶分子的取向,因此可以将其用于包括超连续谱产生的光谱控制在内的各种应用。 (C)2015 Elsevier B.V.保留所有权利。

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