首页> 外文期刊>Journal of Lightwave Technology >Improved finite-difference beam-propagation method based on the generalized Douglas scheme and its application to semivectorial analysis
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Improved finite-difference beam-propagation method based on the generalized Douglas scheme and its application to semivectorial analysis

机译:基于广义道格拉斯格式的改进的有限差分光束传播方法及其在半矢量分析中的应用

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摘要

The generalized Douglas scheme for variable coefficients is applied to the propagating beam analysis. Once the alternating direction implicit method is used, the truncation error is reduced in the transverse directions compared with the conventional Crank-Nicholson scheme, maintaining a tridiagonal system of linear equations. Substantial improvement in the accuracy is achieved even in the TM mode propagation. As an example of the semivectorial analysis, the propagating field and the attenuation constant of a bent embedded waveguide with a trench section are calculated and discussed.
机译:将广义变系数Douglas方案应用于传播光束分析。一旦使用了交变方向隐式方法,与传统的Crank-Nicholson方案相比,在横向方向上的截断误差将减小,并保持线性方程的三对角线系统。即使在TM模式传播中,也可以实现准确性的显着提高。作为半矢量分析的一个例子,计算并讨论了具有沟槽截面的弯曲嵌入式波导的传播场和衰减常数。

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