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Comparison of coupled mode theory and FDTD simulations of coupling between bent and straight optical waveguides

机译:弯曲与直形光波导耦合的耦合模式理论与FDTD仿真的比较

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摘要

Analysis of integrated optical cylindrical microresonators involves the coupling between a straight waveguide and a bent waveguide. Our (2D) variant of coupled mode theory is based on analytically represented mode profiles. With the bend modes expressed in Cartesian coordinates, coupled mode equations can be derived in a classical way and solved by numerical integration. Proper manipulation of the propagation matrix leads to stable results even in parameter domains of compact and/or radiative structures, which seemed unsuitable for a perturbational approach due to oscillations of the matrix elements along the propagation. Comparisons with FDTD calculations show convincing agreement.
机译:集成光学圆柱型微谐振器的分析涉及直线波导和弯曲波导之间的耦合。我们的耦合模式理论的(2D)变体基于解析表示的模式配置文件。通过用笛卡尔坐标表示的弯曲模式,可以以经典方式导出耦合模式方程,并通过数值积分求解。即使在紧凑和/或辐射结构的参数域中,对传播矩阵的正确操作也会导致稳定的结果,由于矩阵元素沿传播方向的振荡,这似乎不适用于微扰方法。与FDTD计算的比较表明令人信服。

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