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Gaussian Beam Summation Representation of Beam Diffraction by an Impedance Wedge: A 3D Electromagnetic Formulation Within the Physical Optics Approximation

机译:高斯光束的阻抗楔形衍射总和表示:物理光学近似中的3D电磁公式

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We present a beam summation (BS) representation for the field scattered by an impedance wedge illuminated by a general 3D electromagnetic Gaussian beam (EM-GB). The emphasis here is not only on the solution of the beam diffraction problem, but mainly on the BS representation. In this representation, the field is expressed as a beam optics (BO) term plus an edge field, described as a sum of diffracted EM-GB's emerging from a discrete set of points and directions along the edge. We introduce an edge-fixed set of EM-GB's that provides a basis for the edge field. The expansion coefficients (the beam's excitation amplitudes) account in a dyadic format for the polarization of the incident beam and also for its direction, displacement from the edge, collimation, and astigmatism. We derive exact expressions for these coefficients as well as simpler approximations that are valid uniformly as a function of the incident beam distance from the edge. The results of this paper provide essential building blocks for a BS representation of EM fields in complex configurations, where the source excited field is described as a sum of beam propagators, and the diffracted fields generated by propagators that hit near edges are also described using beams.
机译:我们为通过一般3D电磁高斯光束(EM-GB)照射的阻抗楔形散射的场提供了光束总和(BS)表示。这里的重点不仅在于光束衍射问题的解决,而且主要在于BS表示。在此表示形式中,该场表示为光束光学(BO)项加上边缘场,该场描述为从沿边缘的一组离散点和方向出现的衍射EM-GB的总和。我们介绍了一组边缘固定的EM-GB,它为边缘场提供了基础。扩展系数(光束的激发幅度)以二进位格式表示入射光束的偏振,以及其方向,从边缘的位移,准直和像散。我们得出这些系数的精确表达式以及更简单的近似值,这些近似值根据入射光束到边缘的距离而一致地有效。本文的结果为复杂结构中EM场的BS表示提供了基本的构建块,其中,源激发场描述为光束传播器的总和,还使用光束描述了传播器撞击近边缘的衍射场。 。

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