The Finite Element Beam Propagation Method based on adaptive Padé approximation for analyzing a wide-angle waveguide

Marinda Hongthong, T. Angkaew
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Abstract

This paper proposed a mathematical model for wide-angle structure to analyze and compare results from the first and second order of Padé approximation. The proposed method aims to improve accuracy and efficiency of the Vectorial Finite Element Beam Propagation Method (FE-VBPM) using the Padé approximation in the wide-angle formulation of the waveguide structure. The computational complexity is greatly reduced by using the transverse FE-BPM with rectangular nodal elements. The boundary condition includes the 2D perfectly matched layer (PML) in its calculation. The proposed method studies wave equations in the frequency domain of an isotropic medium. The relative power is calculated in the tapered waveguide, which is the non-uniform structure formulation. The simulation results are obtained and analyzed on four different angles of tapered waveguide structure.
基于自适应pad近似的有限元波束传播法分析广角波导
本文提出了广角结构的数学模型,对一阶和二阶pad近似的结果进行了分析和比较。提出的方法旨在提高矢量有限元光束传播法(FE-VBPM)的精度和效率,该方法在波导结构的广角公式中使用pad近似。采用带矩形节点元的横向FE-BPM,大大降低了计算复杂度。边界条件的计算中包含二维完美匹配层。该方法研究了各向同性介质的频域波动方程。在非均匀结构形式的锥形波导中计算相对功率。对四种不同角度的锥形波导结构进行了仿真分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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