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Structure dependence of mode edges in photonic crystal waveguide with silicon on insulator

机译:硅在绝缘子上的光子晶体波导中模边缘的结构依赖性

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The mode edges of photonic crystal waveguide with triangular lattice based on a silicon-on-insulator slab are investigated by combination of the effective index method and two-dimensional plane wave expansion method. The variations of waveguide-mode edges with structure parameters of photonic crystal are deduced. When the ratio of the radius of air holes to the lattice constrant, r/Lambda, is fixed and the lattice constant of photonic crystal, Lambda, increases, the waveguide-mode edges shift to longer wavelengths. When Lambda is fixed and r/Lambda increases, the waveguide-mode edges shift to shorter wavelengths. Additionally, when r/Lambda and Lambda are both fixed, the radius of the two-row air holes adjacent to the waveguide increases, the waveguide-mode edges shift to shorter wavelengths.
机译:结合有效折射率法和二维平面波展开法,研究了基于绝缘体上硅片的三角晶格光子晶体波导的模边缘。推导了波导模式边缘随光子晶体结构参数的变化。当气孔半径与晶格常数r / Lambda的比率固定且光子晶体Lambda的晶格常数增加时,波导模式的边缘会移至更长的波长。当Lambda固定且r / Lambda增加时,波导模式边缘会移至较短的波长。此外,当r / Lambda和Lambda都固定时,与波导相邻的两行气孔的半径会增加,波导模式的边缘会移至较短的波长。

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