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Scattering by simple and nonsimple shapes by the combined method of ray tracing and diffraction: application to circular cylinders

机译:光线追踪和衍射相结合的方法对简单和非简单形状的散射:应用于圆柱体

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摘要

The combined method of ray tracing and diffraction (CMRD) is an efficient and accurate technique for computing the scattered field in focal regions of optical systems. Here we extend the CMRD concept so it can be used to compute fields scattered by objects of simple as well as nonsimple shapes. To that end we replace the scattering object by an equivalent, planar phase object; use ray tracing to determine its location, aperture area, amplitude distribution, and phase distribution; and use standard Kirchhoff diffraction theory to compute the field scattered by the equivalent phase object. To illustrate the practical use of the CMRD we apply it to a two-dimensional problem in which a plane or cylindrical wave is normally incident upon a circular cylinder. For this application we determine the range of validity of the CMRD by comparing its results for the scattered field with those obtained by use of an exact eigenfunction expansion.#1998 Optical Society of America OCIS codes: 050.1940, 290.0290, 350.5030.
机译:射线追踪和衍射的组合方法(CMRD)是一种用于计算光学系统焦点区域中的散射场的高效且准确的技术。在这里,我们扩展了CMRD概念,因此它可以用于计算由简单形状和非简单形状的对象散布的场。为此,我们用等效的平面相位对象代替了散射对象。使用光线跟踪来确定其位置,孔径区域,幅度分布和相位分布;并使用标准的基尔霍夫衍射理论计算等效相对象散射的场。为了说明CMRD的实际使用,我们将其应用于二维问题,在该问题中,平面波或圆柱波通常入射到圆柱上。对于此应用程序,我们通过将其在散射场中的结果与通过使用精确本征函数展开获得的结果进行比较来确定CMRD的有效性范围。#1998美国光学学会OCIS代码:050.1940、290.0290、350.5030。

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