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Scalar wave solution for the scattering of a partially coherent beam from a statistically rough metallic surface

机译:用于从统计上粗糙的金属表面散射部分相干光束的标量波解

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The scattering of a spatially partially coherent wave from a one-dimensional statistically rough metallic surface is investigated. Assuming a Gaussian Schell-model form for the incident field autocorrelation function, a closed-form expression for the scattered field autocorrelation function is derived using the physical optics approximation (Kirchhoff approximation). Two forms of the solution are derived-one applicable to very rough surfaces and the other applicable to moderately rough surfaces. It is shown that for very rough surfaces, the solution, under certain circumstances, remains Gaussian Schell model as has been previously reported. As such, closed-form expressions for the angular coherence radius and angular scattering radius are derived. These expressions are, in general, complicated functions of both the source (size and coherence properties) and surface parameters (surface height standard deviation and correlation length). It is demonstrated that for many scenarios of interest, the angular coherence radius can be safely approximated as a function of just the source parameters and the angular scattering radius can be simplified to a function of just the surface parameters. For the moderately rough surface solution, the scattered field autocorrelation function is, in general, not Gaussian Schell model and it is therefore not possible to derive analytical forms for the angular coherence radius or angular scattering radius. Nonetheless, the form of the autocorrelation function is physically intuitive and is discussed in this work. To verify the presented theoretical analysis, wave optics simulation results are presented and compared to the predictions of the analytical models. This analysis is concluded with a discussion of future work.
机译:研究了从一维统计粗糙金属表面散射的空间部分相干波的情况。假设入射场自相关函数具有高斯谢尔模型形式,则使用物理光学近似(基尔霍夫近似)可得出散射场自相关函数的闭式表达式。导出两种形式的解决方案,一种适用于非常粗糙的表面,另一种适用于中等粗糙的表面。结果表明,对于非常粗糙的表面,在某些情况下,该解决方案仍为高斯谢尔模型,正如先前所报道的那样。这样,导出了角相干半径和角散射半径的封闭形式的表达式。这些表达式通常是源(大小和相干属性)和表面参数(表面高度标准偏差和相关长度)的复杂函数。已经证明,对于许多感兴趣的场景,可以将相干半径安全地近似为仅源参数的函数,并且可以将角散射半径简化为仅具有表面参数的函数。对于中等粗糙的表面解,散射场自相关函数通常不是高斯谢尔模型,因此不可能导出角相干半径或角散射半径的解析形式。尽管如此,自相关函数的形式在物理上是直观的,并在本工作中进行了讨论。为了验证所提出的理论分析,提出了波光学仿真结果,并将其与分析模型的预测进行了比较。通过对未来工作的讨论来结束本分析。

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