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首页> 外文期刊>Optics Letters >Full-vector mode solver for bending waveguides based on the finite-difference frequency-domain method in cylindrical coordinate systems
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Full-vector mode solver for bending waveguides based on the finite-difference frequency-domain method in cylindrical coordinate systems

机译:基于有限差分频域法的圆柱坐标系弯曲波导全矢量模式求解器

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A full-vector mode solver for bending waveguides is described based on the finite-difference frequency-domain method in a local cylindrical coordinate system in which the formulas are directly derived from Maxwell's equations with the help of Yee's mesh. The perfectly matched layer absorbing boundary conditions are incorporated into the present approach in order to effectively demonstrate the leaky nature of bending waveguides. A typical bending rib waveguide is considered as a numerical example to show the effectiveness of the established method.
机译:在局部圆柱坐标系中,基于有限差分频域方法,描述了一种用于弯曲波导的全矢量模式求解器,其中,公式借助Yee网格直接从Maxwell方程组导出。吸收边界条件的完美匹配层被并入本方法中,以便有效地证明弯曲波导的泄漏性质。一个典型的弯曲肋形波导被视为一个数值示例,以显示所建立方法的有效性。

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