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Negative reflection and negative surface wave conversion from obliquely incident electromagnetic waves

机译:倾斜入射电磁波的负反射和负表面波转换

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摘要

Complete control of spatially propagating waves (PWs) and surface waves (SWs) is an ultimate goal that scientists and engineers seek for, in which negative reflection of PW and negative surface wave are two exotic phenomena. Here, we experimentally demonstrate an anisotropic digital coding metasurface capable of controlling both PWs and SWs with a single coding pattern. On the basis of the digital description of coding metasurfaces, a simple coding method is proposed to allow dual functionalities (either PW or SW manipulations) under two orthogonal polarizations at arbitrarily oblique incidences, thus improving the adaptability of digital coding metasurfaces in more practical circumstances. With elaborately designed ellipse-shaped coding particles, we experimentally demonstrate various functions under oblique incidences, including the negative reflection of PW, negative SW, anomalous reflection and their arbitrary combinations, all having good agreements with theoretical and numerical predictions. We believe that the proposed method may enable the digital coding metasurfaces to have broad applications in radar detections, wireless communications and imaging.
机译:完全控制空间传播波(PW)和表面波(SWs)是科学家和工程师追求的最终目标,其中PW的负反射和负表面波是两个奇特的现象。在这里,我们实验证明了一种各向异性的数字编码超表面,它能够用一个编码模式控制PW和SW。基于对编码超表面的数字描述,提出了一种简单的编码方法,该方法允许在任意倾斜入射角的两个正交极化下实现双重功能(PW或SW操作),从而提高了数字编码超表面在实际环境中的适应性。通过精心设计的椭圆形编码粒子,我们通过实验证明了斜入射下的各种功能,包括PW的负反射,SW的负反射,反常反射及其任意组合,所有这些都与理论和数值预测相吻合。我们认为,所提出的方法可以使数字编码超表面在雷达探测,无线通信和成像中具有广泛的应用。

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