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Full-vectorial analysis of optical waveguides by the finite difference method based on polynomial interpolation

机译:基于多项式插值的有限差分法对光波导进行全矢量分析

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Based on the polynomial interpolation, a new finite difference (FD) method in solving the full-vectorial guidedmodes for step-index optical waveguides is proposed. The discontinuities of the normal components of the electric field across abrupt dielectric interfaces are considered in the absence of the limitations of scalar and semivectorial approximation, and the present FD scheme can be applied to both uniform and non-uniform mesh grids. The modal propagation constants and field distributions for buried rectangular waveguides and optical rib waveguides are presented. The hybrid nature of the vectorial modes is demonstrated and the singular behaviours of the minor field components in the corners are observed. Moreover, solutions are in good agreement with those published early, which tests the validity of the present approach.
机译:在多项式插值的基础上,提出了求解阶跃折射率波导全矢量导模的一种新的有限差分法。在没有标量和半矢量近似的限制的情况下,可以考虑电场在突变介电界面上的法向分量的不连续性,并且本发明的FD方案可以应用于均匀和非均匀的网格。给出了埋入式矩形波导和光学肋形波导的模态传播常数和场分布。证明了矢量模式的混合性质,并观察了角落中次要场分量的奇异行为。此外,解决方案与早期发布的解决方案非常吻合,这些测试测试了该方法的有效性。

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