各向异性德拜色散媒质中传播系数的快速计算

      Fast calculation of propagation coefficients in anisotropic Debye dispersive media

      • 摘要: 为了高效、准确地分析三维多层各向异性德拜色散媒质的电磁特性,提出了一种快速传输矩阵法(fast-transfer matrix method, F-TMM)。该方法从旋度麦克斯韦方程组出发,利用已知的平面波横向矢量得到各向异性德拜色散媒质中的控制方程。通过对控制方程进行进一步的化简和计算,可以导出各向异性德拜色散媒质的特征值。随后,利用电场和磁场在分界面处的切向连续性,构造多层媒质中的传递矩阵,获得各向异性德拜色散媒质中的反射系数和透射系数。本文设计了两个单轴/双轴各向异性德拜色散媒质的数值实验,并完成了传播系数的数值对比。结果表明,F-TMM相较于COMSOL软件、CST软件和传统传输矩阵法(traditional-transfer matrix method, T-TMM),计算结果的范数误差小于10−3,计算内存和CPU时间分别节约了至少46.6%和68.1%。该方法为研究各向异性德拜色散媒质的电磁特性提供了可靠且高效的计算途径。

         

        Abstract: To efficiently and accurately analyze the electromagnetic properties of three-dimensional multilayer anisotropic Debye dispersive media, this paper proposes a fast-transfer matrix method (F-TMM). Starting from Maxwell's curl equations, the method derives the governing equations for anisotropic Debye dispersive media by utilizing the known transverse vectors of plane waves. Through simplification and computation of the governing equations, the eigenvalues of the anisotropic Debye dispersive media are systematically solved. By leveraging the tangential continuity conditions of electric and magnetic fields at interfaces, the transfer matrix within multilayer media is constructed, thereby obtaining the reflection and transmission coefficients in anisotropic Debye dispersive media. Two numerical experiments on uniaxial and biaxial anisotropic Debye dispersive media are designed, and a numerical comparison of propagation coefficients is conducted. The results demonstrate that compared with COMSOL software, CST software, and the traditional-transfer matrix method (T-TMM), F-TMM achieves a norm error of less than 10−3 in calculation results, while saving at least 46.6% in computational memory and 68.1% in CPU time, respectively. This method provides a reliable and efficient computational tool for investigating the electromagnetic characteristics of anisotropic Debye dispersive media.

         

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