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First-Principles Full-Vectorial Eigenfrequency Computations for Axially Symmetric Resonators

机译:轴向对称谐振器的第一性原理全矢量本征频率计算

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摘要

Starting from the time-harmonic Maxwell's equations in cylindrical coordinates, we derive and solve the finite-difference (FD) eigenvalue equations for determining vector modes of axially symmetric resonator structures such as disks, rings, spheres and toroids. Contrary to the most existing implementations, our FD scheme is readily adapted for both eigenmode and eigenfrequency calculations. An excellent match of the FD solutions with the analytically calculated mode indices of a microsphere resonator provides a numerical confirmation of the mode-solver accuracy. The comparison of the presented FD technique with the finite-element method highlights the relative strengths of both techniques and advances the FD mode-solver as an important tool for cylindrical resonator design.
机译:从圆柱坐标系中的时谐麦克斯韦方程组出发,我们推导并求解了有限差分(FD)特征值方程组,以确定轴向对称谐振器结构(如圆盘,圆环,球体和环形线圈)的矢量模式。与大多数现有的实现相反,我们的FD方案很容易适用于本征模和本征频率计算。 FD解决方案与微球谐振器的解析计算模式指数的极佳匹配为模式求解器的精度提供了数值确认。所提出的FD技术与有限元方法的比较突出了这两种技术的相对优势,并使FD模式求解器成为圆柱谐振器设计的重要工具。

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