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首页> 外文期刊>The European physical journal, E. Soft matter >Tunable transmission of a nematic liquid crystal as defect in a 1D periodic structure of dielectric materials by orientation and re-orientation of liquid crystal molecules
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Tunable transmission of a nematic liquid crystal as defect in a 1D periodic structure of dielectric materials by orientation and re-orientation of liquid crystal molecules

机译:通过液晶分子的取向和再定向可调谐液晶作为介电材料的1D周期结构中的缺陷

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摘要

In this paper, we investigate tunable transmission characteristics of a one-dimensional periodic structure (1DPS), designed with periodic dielectric materials containing a nematic liquid crystal (NLC) as a defect layer, on the basis of orientation and re-orientation of LC molecules. The nonlinear differential equation for the director of the liquid crystal under the light field is solved numerically. The relation between the liquid crystal director and the intensity of the electromagnetic wave (EMW) is derived. Transmittances of the liquid crystal defect layer in the 1DPS are calculated with the variation of the intensity of the incident wave and liquid crystal director tilt angles. By varying the director tilt angle of the liquid crystal molecules as well as the incident angle of the EMW, the shifting of the transmitted defect mode wavelengths is studied. Such study is helpful to understand how orientation and reorientation of the molecules affect the transmittance of the considered periodic structure when the EMW interacts with an embedded liquid crystal as a defect layer in the 1DPS of dielectric materials. Such photonic structure of dielectric materials with the liquid crystal layer as a defect layer can be used to fabricate bistable switches, optical filters, feedback lasers, etc.
机译:在本文中,我们研究了一维周期结构(1DP)的可调节传输特性,设计有含有含有向液晶(NLC)作为缺陷层的周期性介电材料,基于LC分子的取向和再取向。光场下方液晶导向器的非线性微分方程在数值上进行解决。衍生液晶导向器与电磁波(EMW)的强度之间的关系。利用入射波和液晶导向器倾斜角度的强度的变化来计算1DP中的液晶缺陷层的透射率。通过改变液晶分子的导向倾斜角以及EMW的入射角,研究了透射缺陷模式波长的移位。这种研究有助于了解分子的方向和重新定向如何影响所考虑的周期性结构的透射率,当EMW与嵌入式液晶相互作用作为介电材料的1DP中的缺陷层时。这种具有液晶层作为缺陷层的介电材料的光子结构可用于制造双稳态开关,光学滤波器,反馈激光器等。

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    Babasaheb Bhimrao Ambedkar Univ Sch Phys &

    Decis Sci Dept Phys Lucknow Uttar Pradesh India;

    Babasaheb Bhimrao Ambedkar Univ Sch Phys &

    Decis Sci Dept Phys Lucknow Uttar Pradesh India;

    Babasaheb Bhimrao Ambedkar Univ Sch Phys &

    Decis Sci Dept Phys Lucknow Uttar Pradesh India;

    Babasaheb Bhimrao Ambedkar Univ Sch Phys &

    Decis Sci Dept Phys Lucknow Uttar Pradesh India;

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  • 正文语种 eng
  • 中图分类 物理学;
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