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Combination of characteristic Green's function technique and rational function fitting method for computation of modal reflectivity at the optical waveguide end-facet

机译:特征格林函数技术与有理函数拟合方法的组合,用于计算光波导端面的模态反射率

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摘要

A novel method for computation of modal reflectivity at optical waveguide end-facet is presented. The method is based on the characteristic Green's function (CGF) technique. Using separability assumption of the structure and rational function fitting method (RFFM), a closed-form field expression is derived for optical planar waveguide. The uniform derived expression consists of discrete and continuous spectrum contributions which denotes guided and radiation modes effects respectively. An optimization problem is then defined to calculate the exact reflection coefficients at the end-facet for all extracted poles obtained from rational function fitting step. The proposed CGF-RFFM-optimization offers superior exactness in comparison with the previous reported CGF-complex images (CI) technique due to contribution of all components of field in the optimization problem. The main advantage of the proposed method lies in its simple implementation as well as precision for any refractive index contrast. Excellent numerical agreements with rigorous methods are shown in several examples.
机译:提出了一种计算光波导端面模态反射率的新方法。该方法基于特征格林函数(CGF)技术。利用结构的可分性假设和有理函数拟合方法(RFFM),推导了光学平面波导的闭合场表达式。统一导出的表达式由离散谱图和连续谱图组成,分别表示制导和辐射模式效应。然后定义一个优化问题,以计算从有理函数拟合步骤获得的所有提取极点的端面精确反射系数。相比于先前报道的CGF复杂图像(CI)技术,拟议的CGF-RFFM优化提供了更高的准确性,这是由于优化问题中所有场分量的影响。所提出的方法的主要优点在于其简单的实现以及对于任何折射率对比的精度。在几个示例中显示了采用严格方法的出色数值协议。

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