Characteristics of optically controlled dielectric resonators with light injection hole

A. Rong, Z.L. Sun
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Abstract

An enhanced model for characterizing optically controlled dielectric resonators is presented. The practical details of the structure are taken into account including the light injection hole etched on the upper shielding metallic plate, the inhomogeneous distribution of the induced excess carrier concentrations due to surface recombination and diffusion, substrate surface waves, and radial radiation if the side wall is absent. In addition, the model allows the semiconductor sample and the dielectric rod to have different radii. The model is based on the dyadic Green's function in a cylindrical coordinate system in conjunction with the equivalence principle. The infinite integrals involved in the matrix elements of the resultant characteristic equation are completed by deforming the integral contour off the real k/sub /spl rho// axis to include the contribution due to the surface wave poles.<>
具有光注入孔的光控介质谐振腔的特性
提出了一种用于表征光控介质谐振腔的改进模型。考虑了该结构的实际细节,包括在上部屏蔽金属板上蚀刻的光注入孔、由于表面复合和扩散引起的诱导过量载流子浓度的不均匀分布、衬底表面波以及没有侧壁时的径向辐射。此外,该模型允许半导体样品和介电杆具有不同的半径。该模型基于柱坐标系下的并矢格林函数,并结合等效原理。所得到的特征方程的矩阵元素所涉及的无穷积分是通过将积分轮廓从实际的k/sub /spl / rho//轴上变形来完成的,以包括由于表面波极点的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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