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Scattering of TM Plane Wave from Periodic Grating with Single Defect

机译:单缺陷周期光栅对TM平面波的散射

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This paper deals with the scattering of a TM plane wave from a periodic grating with single defect, of which position is known. The surface is perfectly conductive and made up with a periodic array of rectangular grooves and a defect where a groove is not formed. The scattered wave above grooves is written as a variation from the diffracted wave for the perfectly periodic case. Then, an integral equation for the scattering amplitude is obtained, which is solved numerically by use of truncation and the iteration method. The differential scattering cross section and the optical theorem are calculated in terms of the scattering amplitude and are illustrated in figures. It is found that incoherent Wood's anomaly appears at critical angles of scattering. The physical mechanisms of Wood's anomaly and incoherent Wood's anomaly are discussed in relation to the guided surface wave excited by the incident plane wave. It is concluded that incoherent Wood's anomaly is caused by the diffraction of the guided surface wave.
机译:本文研究了具有单个缺陷的周期性光栅对TM平面波的散射,其位置是已知的。该表面是完全导电的,并且由矩形凹槽的周期性阵列和未形成凹槽的缺陷组成。对于完美周期性的情况,凹槽上方的散射波被写为衍射波的变化。然后,获得了散射振幅的积分方程,通过使用截断和迭代方法对其进行数值求解。根据散射幅度计算微分散射截面和光学定理,并在图中进行说明。发现不相干的伍德异常出现在散射的临界角处。针对入射平面波激发的引导面波,讨论了伍德异常和非相干伍德异常的物理机制。结论是,非相干伍德氏异常是由导波表面波的衍射引起的。

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