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Design and optimization of a low loss tapered photonic crystal waveguide structure

机译:低损耗锥形光子晶体波导结构的设计与优化

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We present a two-dimensional study of low-loss photonic crystal defect waveguides built from a Ⅲ-Ⅴ type semiconductor-based system surrounded by cylindrical air pillars in a prototypical lattice. Varying the parameters of the lattice, including several taper geometries and lengths in the typical wavelengths usually employed in telecommunications, we perform an extensive statistical survey that determines a parameter map that can be taken as a guide by transmission hardware designers to choose the best lattice geometry in terms of optimum transmittance and minimization of the impedance mismatch.
机译:我们对低损耗光子晶体缺陷波导进行了二维研究,该波导是由Ⅲ-Ⅴ型基于半导体的系统构建的,该系统被原型晶格中的圆柱形空气柱围绕。改变晶格的参数,包括几种锥度几何形状和通常在电信中使用的典型波长的长度,我们进行了广泛的统计调查,确定了参数图,传输硬件设计人员可以以此为指导来选择最佳的晶格几何形状在最佳透射率和最小化阻抗失配方面。

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