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Rectangular modes and dyadic Green's functions in a rectangular chirowaveguide. I. Theory

机译:矩形波导管中的矩形模和二进格林函数。一,理论

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An analytic solution of electromagnetic-wave propagation in a rectangular chirowaveguide is represented in this paper in terms of spectral-domain dyadic Green's functions (DGF's) in a general form. The method used here is a combination of a wavefield decomposition method and DGF eigenfunction expansion technique. This DGF decomposition method avoids having to use the modified and normalized vector wave functions, which are found difficult to satisfy the boundary conditions of chirowaveguides in which the reconciliation of Dirichlet and Neumann conditions is impossible. On the other hand, this method can be generalized to a chirowaveguide of arbitrary cross section and is found reducible to a nonchiral case. It is observed that in a similar fashion to the conventional rectangular waveguide, the duality between the electric and magnetic types of DGF's in the rectangular chirowaveguide does not exist. To show the reducibility of the generalized DGF's for bi-isotropic media, we summarized the procedure of utilizing the formulas and proved in detail that the form of the DGF's can be reduced to that for chiral media and achiral (isotropic) media. Exactly the same DGF's are obtainable for the isotropic media by reducing the general formulas. The electric and magnetic fields in the rectangular chirowaveguide due to a point dipole excitation oriented in the y-direction are derived. The detailed numerical analysis includes the novel features of the dispersion relations, the effects of chirality on the novel features of the rectangular chirowaveguides, some newly discovered features, and vector field plots and contour plots of higher order modes of electric and magnetic fields.
机译:本文以一般形式的频谱域二进格林函数(DGF's)表示矩形手波导中电磁波传播的解析解。这里使用的方法是波场分解方法和DGF本征函数扩展技术的组合。这种DGF分解方法避免了必须使用修正的和归一化的矢量波函数,发现这些矢量波函数很难满足不能满足Dirichlet和Neumann条件对调的波导管的边界条件。另一方面,该方法可以推广到任意横截面的手性波导,并且发现对于非手性情况是可简化的。可以观察到,以类似于常规矩形波导的方式,矩形手形波导中DGF的电和磁类型之间不存在对偶性。为了显示广义DGF对双各向同性介质的可还原性,我们总结了使用这些公式的过程,并详细证明了DGF的形式可以简化为手性介质和非手性(各向同性)介质。通过减少通式,对于各向同性介质,可以获得完全相同的DGF。推导由于沿y方向定向的点偶极子激发而导致的矩形手形波导中的电场和磁场。详细的数值分析包括色散关系的新颖特征,手性对矩形手性波导新颖特征的影响,一些新发现的特征以及高阶电场和磁场模式的矢量场图和轮廓图。

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