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Improved coupled-mode formulation based on composite modes for parallel grating-assisted co-directional couplers

机译:改进的基于复合模的平行光栅辅助同向耦合器耦合模公式

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摘要

An improved coupled-mode formulation based on the ideal modes of the coupled waveguides (ideal composite modes) is presented. In comparison with the formulation based on the ideal modes of the individual waveguides (ideal waveguide modes), the formulation in terms of composite modes is more rigorous and yields a more accurate grating period and coupling lengths. In addition, the radiation loss due to input and output junctions can in the composite-mode formulation. A new to the coupled-mode equations is derived in which all the spatial harmonics generated by the periodic grating are taken into account. The power exchange between the waveguides is examined by considering the input and the output conditions. The phase-matching conditions and the coupling lengths are calculated and compared with the analysis in terms of the waveguide modes. The grating period predicted by the waveguide-mode formulation agrees very well with that by the composite-mode formulation; however, dramatically different coupling lengths are predicted by the two formulations.
机译:提出了一种基于耦合波导理想模式(理想复合模式)的改进耦合模式公式。与基于单个波导的理想模式(理想波导模式)的公式相比,在复合模式方面的公式更加严格,并且产生了更准确的光栅周期和耦合长度。另外,在复合模式的公式中,由于输入和输出结导致的辐射损耗也可能会出现。导出了耦合模式方程的新模型,其中考虑了由周期性光栅产生的所有空间谐波。通过考虑输入和输出条件来检查波导之间的功率交换。计算相位匹配条件和耦合长度,并根据波导模式与分析进行比较。波导模式公式预测的光栅周期与复合模式公式预测的非常吻合。但是,两种公式预测的耦合长度会大不相同。

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