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An Approximate Theory of the Diffraction of an Electromagnetic Wave by an Aperture in a Plane Screen

机译:平面屏幕中小孔对电磁波的衍射的近似理论

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An approximate diffraction theory based on the Sommerfeld half-plane solution is developed. It is shown that, in certain regions, the electromagnetic field scattered (in the two-dimensional problem) by a perfectly conducting half-plane with plane waves incident can be conceived as arising from the flow of electric and magnetic currents along the edge of the half-plane. This edge-current concept is extended to the diffraction of normally incident plane waves by an aperture of arbitrary form in a thin, perfectly conducting screen of infinite extent. The approximation is for large apertures and is probably asymptotic. Interaction between the fields scattered by different parts of the screen is neglected in the present treatment. Expressions are obtained for the tangential electric field in the aperture in terms of these edge currents. The case of the circular aperture is studied in some detail, axial and aperture field distributions being derived and compared with the available experimental and theoretical data. Agreement with experiment and theory is fairly close, and improves with increase of the ratio of aperture radius to wavelength of incident radiation.
机译:建立了基于Sommerfeld半平面解的近似衍射理论。结果表明,在某些区域中,由平面波入射的完美传导的半平面散射(在二维问题中)的电磁场可以被认为是由沿电磁波边缘流动的电磁电流引起的。半平面。该边缘电流概念通过任意形式的孔径扩展到法向入射平面波的衍射,该孔径在无限范围的薄且完美导电的屏幕中。近似值适用于大孔径,并且可能是渐近的。在本处理中,忽略了由屏幕的不同部分散射的场之间的相互作用。根据这些边缘电流,获得了孔径中切向电场的表达式。对圆形孔的情况进行了详细的研究,得出了轴向和孔场分布,并将其与可用的实验和理论数据进行了比较。与实验和理论的一致性相当接近,并且随着孔径半径与入射辐射波长之比的增加而提高。

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