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Full-vectorial finite-difference beam propagation method based on the modified alternating direction implicit method

机译:基于改进交变方向隐式方法的全矢量有限差分光束传播方法

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摘要

A modified alternating direction implicit algorithm is proposed to solve the full-vectorial finite-difference beam propagation method formulation based on H fields. The cross-coupling terms are neglected in the first sub-step, but evaluated and doubly used in the second sub-step. The order of two sub-steps is reversed for each transverse magnetic field component so that the cross-coupling terms are always expressed in implicit form, thus the calculation is very efficient and stable. Moreover, an improved six-point finite-difference scheme with high accuracy independent of specific structures of waveguide is also constructed to approximate the cross-coupling terms along the transverse directions. The imaginary-distance procedure is used to assess the validity and utility of the present method. The field patterns and the normalized propagation constants of the fundamental mode for a buried rectangular waveguide and a rib waveguide are presented. Solutions are in excellent agreement with the benchmark results from the modal transverse resonance method.
机译:提出了一种改进的交变方向隐式算法,用于求解基于H场的全矢量有限差分光束传播方法。交叉耦合项在第一个子步骤中被忽略,但是在第二个子步骤中被评估并被双重使用。对于每个横向磁场分量,两个子步骤的顺序相反,因此交叉耦合项始终以隐式形式表示,因此计算非常有效且稳定。而且,还构造了一种独立于波导的特定结构的,具有高精度的改进的六点有限差分方案,以近似沿横向方向的交叉耦合项。虚距过程用于评估本方法的有效性和实用性。给出了埋入式矩形波导和肋形波导的场模和基本模的归一化传播常数。解决方案与模态横向共振法的基准结果非常吻合。

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