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An Efficient Semivectorial Bidirectional Beam Propagation Method for 3-D Optical Waveguide Structures

机译:3-D光波导结构的高效半矢量双向光束传播方法

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An efficient semi-vectorial bidirectional beam propagation method (Bi-BPM) based on the complex Denman–Beavers iterative (C-DBI) scheme for three-dimensional (3-D) optical waveguide structures is constructed. Beside merely calculating the transition operators by the C-DBI scheme, like our previous paper, a new approximation for the bidirectional propagators by using the combination of Padé approximants and C-DBI scheme is proposed and developed. Such a treatment can be capable of correctly dealing with the evanescent waves generated in the transition processes, greatly improving the stability and accuracy of the Bi-BPM. Moreover, the efficiency of the present Bi-BPM can be also improved since the operators calculated by the C-DBI scheme can be simultaneously utilized for both processes of the Bi-BPM. In addition, the biconjugate gradient stabilized method is utilized to solve the resulting linear systems, further improving the efficiency. Numerical results from both single and multiple longitudinal discontinuity examples show that the present method can deal with evanescent waves properly with the accuracy comparable to that of the existing well-established methods.
机译:基于三维(3-D)光波导结构,基于复杂的Denman-Beavers迭代(C-DBI)方案,构建了一种有效的半矢量双向光束传播方法(Bi-BPM)。除了仅通过C-DBI方案计算跃迁算子外,像我们之前的论文一样,提出并开发了Padé近似值和C-DBI方案相结合的双向传播器新近似。这样的处理可以正确地处理过渡过程中产生的the逝波,从而大大提高了Bi-BPM的稳定性和准确性。此外,由于通过C-DBI方案计算出的算子可以同时用于Bi-BPM的两个过程,因此还可以提高本发明的Bi-BPM的效率。另外,利用双共轭物梯度稳定方法来解决所得的线性系统,从而进一步提高了效率。来自单个和多个纵向不连续实例的数值结果表明,本方法可以正确地处理e逝波,其精度与现有的公认方法相当。

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