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Plane Wave Diffraction by a Non-Planar DPS-DNG Junction in the Case of Normal Incidence

机译:在正常入射的情况下,由非平面DPS-DNG结衍射平面波衍射

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This paper solves the diffraction problem associated to a plane wave impacting a non-planar junction of two lossy planar slabs with different electric and magnetic characteristics. One slab consists of a standard double positive material whereas an unusual double negative metamaterial is used for the other slab. A uniform asymptotic solution is proposed in the framework of the uniform theory of diffraction when the incidence direction is orthogonal to the edge of the junction. Such a solution is based on the physical optics approximation of the electric and magnetic equivalent surface currents assumed as radiating sources in the surrounding space and used in the far-field radiation integral. This last denotes the starting point of an analytical procedure that provides closed form expressions containing the transition function of the uniform theory of diffraction and the geometrical optics contribution of the junction. The resulting diffracted field is able to compensate the jumps of the geometrical optics field at the shadow boundaries.
机译:本文解决了与影响具有不同电力和磁特性的两个有损平面板的非平面连接的平面波相关的衍射问题。一个板块由标准的双正材料组成,而不寻常的双负式超材料用于其他板坯。当入射方向与结的边缘正交时,在衍射均匀理论的框架中提出了一种均匀的渐近溶液。这种解决方案基于作为周围空间中的辐射源的电力和磁性等效表面电流的物理光学近似,并且在远场辐射积分中使用。最后表示分析过程的起点,该方法提供包含均匀衍射理论的过渡功能的闭合形式表达和结的几何光学贡献。所得到的衍射场能够补偿阴影边界处的几何光学场的跳跃。

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