首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Wavelet-Galerkin solver for the analysis of optical waveguides
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Wavelet-Galerkin solver for the analysis of optical waveguides

机译:小波-Galerkin求解器,用于分析光波导

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摘要

A new set of basis functions based on truncated Gaussian wavelets is proposed for optical waveguide analysis using the well-known Galerkin method. A spatially limited Gaussian wavelet train is formed by judiciously truncating the tails of Gaussian functions. The proposed set of basis functions produces a sparse eigenvalue equation when the wave equation is solved by the Galerkin method. The limited span of the basis functions makes the computation of integrals associated with matrix elements very fast with lower memory requirements. The effectiveness of the proposed basis functions is tested by comparing the results with those obtained by other methods and other basis functions for diffused and step index planar and channel waveguides. The results show a significant reduction in computation time while maintaining good accuracy.
机译:提出了基于截断的高斯小波的一组新的基函数,用于使用众所周知的Galerkin方法进行光波导分析。通过明智地截断高斯函数的尾部来形成空间有限的高斯小波列。当用Galerkin方法求解波动方程时,提出的一组基函数会生成一个稀疏特征值方程。基本函数的有限跨度使得与矩阵元素关联的积分的计算非常快速,而内存需求却较低。通过将结果与通过其他方法获得的结果以及通过其他方法得到的其他函数和其他基函数进行比较,来测试所提出的基函数的有效性。结果表明,在保持良好准确性的同时,大大减少了计算时间。

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