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Spherical space Bessel-Legendre-Fourier mode solver for Maxwell's wave equations

机译:麦克斯韦波动方程的球面空间Bessel-Legendre-Fourier模式求解器

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For spherically symmetric dielectric structures, a basis set composed of Bessel, Legendre and Fourier functions, BLF, are used to cast Maxwell's wave equations into an eigenvalue problem from which the localized modes can be determined. The steps leading to the eigenmatrix are reviewed and techniques used to reduce the order of matrix and tune the computations for particular mode types are detailed. The BLF basis functions are used to expand the electric and magnetic fields as well as the inverse relative dielectric profile. Similar to the common plane wave expansion technique, the BLF matrix returns the eigen-frequencies and eigenvectors, but in BLF only steady states, non-propagated, are obtained. The technique is first applied to a air filled spherical structure with perfectly conducting outer surface and then to a spherical microsphere located in air. Results are compared published values were possible.
机译:对于球形对称介电结构,由贝塞尔(Bessel),勒让德(Legendre)和傅立叶(Fourier)函数BLF组成的基集用于将麦克斯韦的波动方程式转换为特征值问题,从而可以确定局部模态。回顾了导致特征矩阵的步骤,并详细介绍了用于减少矩阵阶数和调整特定模式类型的计算的技术。 BLF基函数用于扩展电场和磁场以及相对介电常数的倒数。与常见的平面波扩展技术类似,BLF矩阵返回特征频率和特征向量,但在BLF中,仅获得非传播的稳态。该技术首先应用于具有完美导电外表面的充气球形结构,然后应用于位于空气中的球形微球。比较结果是可能的。

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