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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Humblet's Decomposition of the Electromagnetic Angular Moment in Metallic Waveguides
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Humblet's Decomposition of the Electromagnetic Angular Moment in Metallic Waveguides

机译:金属波导中电磁角矩的Humblet分解

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In a seminal paper, Humblet decomposed the angular momentum of a classical electromagnetic field as a sum of three terms: the orbital angular momentum (OAM), the spin, and the more unfamiliar surface angular momentum. In this paper, we present the result of such decomposition for various metallic waveguides. We investigate two hollow metal waveguides with circular and rectangular cross sections, respectively. The waveguides are excited with two TE eigenmodes driven in phase quadrature. As references, two better known modes are also analyzed: a plane, a circularly polarized wave (a TEM mode), and a TE-Bessel beam, both of infinite transverse extent and with no metallic boundaries. Our analysis shows that modes carrying OAM and spin can also propagate in the metallic waveguides, even when the cross section of the waveguide is distinctly non-circular. However, the mode density of orthogonal modes carrying OAM is at most equal to that of the waveguides' eigenmodes.
机译:在一篇开创性的论文中,Humblet将经典电磁场的角动量分解为三个项的总和:轨道角动量(OAM),自旋和更不熟悉的表面角动量。在本文中,我们介绍了各种金属波导的分解结果。我们研究了分别具有圆形和矩形横截面的两个中空金属波导。波导由相位正交驱动的两个TE本征模式激励。作为参考,还分析了两个更广为人知的模式:一个平面,一个圆偏振波(TEM模式)和一个TE-贝塞尔光束,它们都具有无限的横向范围并且没有金属边界。我们的分析表明,即使当波导的横截面明显为非圆形时,携带OAM和自旋的模式也可以在金属波导中传播。但是,携带OAM的正交模式的模式密度最多等于波导的本征模式。

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