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Optical Diffraction in Close Proximity to Plane Apertures. II. Comparison of Half-Plane Diffraction Theories

机译:接近平面孔径的光学衍射。二。半平面衍射理论的比较

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摘要

The accuracy and physical significance of the classical Rayleigh-Sommerfeld and Kirchhoff diffraction integrals are assessed in the context of Sommerfeld’s rigorous theory of half-plane diffraction and Maxwell’s equations. It is shown that the Rayleigh-Sommerfeld integrals are in satisfactory agreement with Sommerfeld’s theory in most of the positive near zone, except at sub-wavelength distances from the screen. On account of the bidirectional nature of diffraction by metallic screens the Rayleigh-Sommerfeld integrals themselves cannot be used for irradiance calculations, but must first be resolved into their forward and reverse components and it is found that Kirchhoff’s integral is the appropriate measure of the forward irradiance. Because of the inadequate boundary conditions assumed in their derivation the Rayleigh-Sommerfeld and Kirchhoff integrals do not correctly describe the flow of energy through the aperture.
机译:经典的Rayleigh-Sommerfeld和Kirchhoff衍射积分的准确性和物理意义是在Sommerfeld严格的半平面衍射理论和Maxwell方程的背景下进行评估的。结果表明,除了离屏幕的亚波长距离外,Rayleigh-Sommerfeld积分在大多数正近区与Sommerfeld的理论都令人满意。由于金属屏幕的双向衍射特性,Rayleigh-Sommerfeld积分本身不能用于辐照度计算,而必须先解析为它们的正向和反向分量,并且发现Kirchhoff积分是正向辐照度的适当度量。由于推导中假定的边界条件不足,Rayleigh-Sommerfeld和Kirchhoff积分无法正确描述通过孔的能量流。

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