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Complex ray interpretation of reflection from concave-convex surfaces

机译:凹凸表面反射的复杂射线解释

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Reflection from a smooth target with inflection points, when investigated by the physical optics method, reveals far-zone contributions arising from real and complex stationary points. The former represent conventional specularly reflected real-ray fields whereas the latter, which are nonspecular in real space, can be interpreted as complex-ray fields reflected specularly from the complex extension of the scatterer surface. To explain the nonspecular contributions, the complex stationary point fields are regarded as specular reflections of complex incident rays from the analytic extension of the boundary into a complex coordinate space. It is verified that this construction using complex geometrical optics is in complete agreement with physical optics asymptotics and that the complex reflection points for far-zone fields lie near the concave-to-convex transitions on the physical contour. Numerical results supporting the validity of this assertion are provided. It is concluded, therefore, that a complete ray theory of reflection from the illuminated portion of a smooth object with inflection points must include specularly reflected real as well as complex rays, with the latter originating from the complex extension of the surface contour.
机译:当通过物理光学方法进行研究时,从具有拐点的光滑目标进行反射,就会发现由真实和复杂的静止点引起的远区影响。前者代表常规的镜面反射的真实光场,而后者代表在现实空间中的非镜面反射,可以解释为从散射体表面的复杂扩展以镜面反射的复光场。为了解释非镜面贡献,将复杂的固定点场视为从边界的解析扩展到复杂坐标空间的复杂入射光线的镜面反射。可以证明,使用复杂几何光学的这种构造与物理光学渐近线完全一致,并且远区场的复杂反射点位于物理轮廓上的凹凸过渡附近。提供了支持该断言有效性的数值结果。因此得出的结论是,从具有拐点的光滑物体的受照部分反射的完整光线理论必须包括镜面反射的真实光线和复杂光线,后者源于表面轮廓的复杂扩展。

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