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Cylindrical vector eigenfunction expansion of Green dyadics for multilayered anisotropic media and its application to four-layered forest

机译:多层各向异性介质的绿色动力学圆柱矢量本征函数展开及其在四层林中的应用

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摘要

A complete eigenfunction expansion of the dyadic Green's functions (DGFs) for planar, arbitrary multilayered anisotropic media using cylindrical vector wave functions is presented. These formulations are constructed based on the principle of scattering superposition. For the scattering dyadic Green's function in each layer, the scattering coefficients of TE and TM modes are determined from the boundary conditions matched at the planar interfaces. The explicit representation of the DGFs after reduction to the isotropic case agrees well with the existing results corresponding to the isotropic media. The general DGFs for multilayered anisotropic media are then reduced to those for a four-layered forest where the trunk layer is modeled as anisotropic medium. Application is further made for radio-wave propagation through forests of a four-layered geometry, whereas it is shown how these Green dyadic formulations are used in a practical way and how the field distributions due to a dipole can be obtained.
机译:提出了使用圆柱矢量波函数的平面,任意多层各向异性介质的二进格林函数(DGF)的完整本征函数展开。这些公式是根据散射叠加原理构造的。对于每一层中的散射二进式格林函数,根据在平面界面处匹配的边界条件确定TE和TM模式的散射系数。还原为各向同性情况后,DGF的明确表示与各向同性介质对应的现有结果非常吻合。然后,将用于多层各向异性介质的一般DGF减少为用于将树干层建模为各向异性介质的四层森林的DGF。还进一步应用了无线电波在四层几何结构的森林中传播,但显示了如何以实际方式使用这些格林二进式公式,以及如何获得由于偶极子引起的场分布。

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