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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Power splitter based on cascaded multimode photonic crystal waveguides with triangular lattice of air holes
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Power splitter based on cascaded multimode photonic crystal waveguides with triangular lattice of air holes

机译:基于带气孔三角格的级联多模光子晶体波导的功率分配器

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摘要

We propose a power splitter based on two-dimensional photonic crystals with triangular lattice of air holes. The structure can be divided into three sections consisting of the input waveguide, area-defect regions, and output waveguides. The operational principle of the splitter is that an incident field in the frequency range of interest is split into a twofold mode pattern with small distance in the first area-defect and then one of which is shifted by the secondary area-defect regions to output port. We optimize the size of area-defects for the mode-splitting and the shifting from the numerical analysis of distribution of time-averaged Poynting vectors by a finite-difference time domain method. And the transmittance over 45percent per each output with a bandwidth about 0.06a/lambda is achieved.
机译:我们提出了一种基于二维光子晶体且具有气孔三角晶格的功率分配器。该结构可以分为三个部分,包括输入波导,区域缺陷区域和输出波导。分离器的工作原理是将感兴趣的频率范围内的入射场在第一区域缺陷中分成距离较小的双重模式模式,然后将其中一个由次级区域缺陷区域移至输出端口。我们通过有限差分时域方法对时间平均Poynting向量分布的数值分析进行了优化,以进行模式分离和偏移的区域缺陷的大小。并且,每个输出的透射率超过45%,带宽约为0.06a /λ。

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