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首页> 外文期刊>Acta Physica Polonica >Full-Vectorial Description of the Light Guidance in Anisotropic Photonic Liquid Crystal Fibers
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Full-Vectorial Description of the Light Guidance in Anisotropic Photonic Liquid Crystal Fibers

机译:各向异性光子液晶光纤中光导的全矢量描述

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In this paper we present our theoretical approach for the description of the light guidance in photonic liquid crystal fibers. In particular, we focus on the numerical methods allowing for a full implementation of the liquid crystals properties (i.e., including their optical anisotropy and molecular orientation), with a final target in characterizing photonic liquid crystal fibers with accessible computational effort. For this purpose suitable analytical formulae required for a full-vectorial description of the optical modes in photonic liquid crystal fibers have been derived. In addition, computational schemes allowing for numerical implementation of theoretical formulations (with the use of the finite-difference scheme) have been developed, validated and optimized. Their numerical convergence has been checked for different structures, as well as for different input parameters (e.g., grid-size). Obtained results have been compared to those analytically calculated, known from literature and/or got with use of commercial software. Moreover, the implemented schemes have been examined in accordance with experimental tests performed on the photonic liquid crystal fiber of interest.
机译:在本文中,我们介绍了用于描述光子液晶光纤中光导的理论方法。特别地,我们专注于允许完全实现液晶特性(即,包括它们的光学各向异性和分子取向)的数值方法,最终目标是通过可访问的计算努力来表征光子液晶纤维。为此,已经得出了用于光子液晶光纤中光学模式的全矢量描述所需的合适分析公式。此外,已经开发,验证和优化了允许对理论公式进行数值实现的计算方案(使用有限差分方案)。已针对不同的结构以及不同的输入参数(例如,网格大小)检查了它们的数值收敛性。将获得的结果与从文献中已知和/或使用商业软件获得的分析结果进行了比较。此外,已经根据对感兴趣的光子液晶光纤进行的实验测试来检查实现的方案。

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