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Efficient mode-order conversion using a photonic crystal structure with low symmetry

机译:使用低对称性的光子晶体结构进行有效的模式阶转换

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The mode-order conversion characteristics of a heterostructure formed by regular photonic crystals (PCs) with high symmetry and PCs with low symmetry are analyzed numerically. The working principle of the proposed mode-order converter is based on the phase retardation of the incident beam while propagating through the PC heterostructure. This type of phase delay arises from the effective refractive index difference between the symmetrical PC and the asymmetric PC, called a modified annular PC (MAPC), at the specified frequency regimes α/λ = 0.281-0.34. Further optimizations that are carried out improve the mode-order conversion bandwidth, reaching up to 24%. By means of such a novel-type configuration, a propagating fundamental mode can be transformed into higher-order modes at the output with adequate transmission efficiency.
机译:数值分析了由具有高对称性的规则光子晶体(PC)和具有低对称性的PC形成的异质结构的模式顺序转换特性。所提出的模序转换器的工作原理是基于入射光束在PC异质结构中传播时的相位延迟。这种类型的相位延迟是由对称PC和不对称PC之间的有效折射率差引起的,在指定的频率范围α/λ= 0.281-0.34处,该有效折射率差被称为修正环形PC(MAPC)。进行的进一步优化可改善模式顺序转换带宽,最高可达24%。通过这种新颖的配置,可以将传播的基本模式在输出端以足够的传输效率转换为高阶模式。

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