首页> 外文期刊>Canadian Journal of Physics >Transformation of Rice's small perturbation solution for rough surface scattering into the high frequency reciprocal physical and geometric optics solutions
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Transformation of Rice's small perturbation solution for rough surface scattering into the high frequency reciprocal physical and geometric optics solutions

机译:将用于粗糙表面散射的赖斯小扰动解转换为高频互易物理和几何光学解

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摘要

A step by step transformation of the low frequency small height and slope perturbation solution into the high frequency reciprocal and dual, physical and geometrical optic solutions is presented. The familiar Kirchhoff approximations for the fields impressed by the incident plane wave upon the rough surfaces results in nonreciprocal solutions. It is shown that the surface element scattering coefficients based on the Kirchhoff approximations agree with the corresponding reciprocal physical optics solutions only at the stationary phase, specular points on the rough surfaces. While the Kirchhoff approximations and physical optics approximations are based on the characterization of the surface fields by Fresnel reflection coefficients, the corresponding surface element scatter coefficient derived for the small perturbation solution and the full wave solutions are based on the imposition of boundary conditions for the tangential components of the electric and magnetic fields. A flow graph schematically depicting the relationships between these solutions for the scattered fields is also presented.
机译:提出了将低频小高度和坡度摄动解逐步转换为高频互易以及对偶,物理和几何光学解的方法。粗糙表面上入射平面波所施加的场的熟悉的基尔霍夫近似值导致不可逆的解。结果表明,基于基尔霍夫(Kirchhoff)近似的表面元素散射系数仅在粗糙表面上的镜面反射点的固定相处与相应的互易物理光学解相符。基尔霍夫近似和物理光学近似是基于菲涅耳反射系数表征表面场的,而小扰动解和全波解导出的相应表面元素散射系数是基于对切向的边界条件的施加的电场和磁场的分量。还提供了流程图,该流程图示意性地描述了散射场的这些解决方案之间的关系。

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