首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Diffraction by 90° penetrable wedges with finite conductivity
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Diffraction by 90° penetrable wedges with finite conductivity

机译:90°可穿透楔形物的衍射具有有限的导电性

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This study concerns the diffraction problem relevant to a plane wave normally incident with respect to a 90° wedge. A penetrable material with finite conductivity forms the structure. A high-frequency solution is here obtained by adopting a physical optics approximation for the equivalent electric and magnetic surface currents involved in the radiation integrals used to represent the fields scattered in the inner region of the wedge and the surrounding space. Uniform asymptotic evaluations of such integrals lead to closed form expressions for the diffraction coefficient in terms of the transition function of the uniform theory of diffraction and the Fresnel coefficients for the reflection and transmission mechanisms. No limitation exists on the loss tangent of the medium. Comparisons with numerical tools assess the effectiveness of the proposed solutions for the field diffracted in the inner and outer regions.
机译:这项研究涉及与通常入射到90°楔形平面波有关的衍射问题。具有有限电导率的可渗透材料形成该结构。在此,通过对与辐射积分中所涉及的等效电磁表面电流采用物理光学近似来获得高频解,该辐射积分用于表示在楔形内部区域和周围空间中散射的场。此类积分的统一渐近评估会根据均匀衍射理论的跃迁函数以及反射和透射机制的菲涅耳系数得出衍射系数的闭式表达式。对介质的损耗角正切没有限制。与数值工具的比较评估了所提出的解决方案对内部和外部区域衍射场的有效性。

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