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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Experimental demonstration and in-depth investigation of analytically designed anomalous reflection metagratings
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Experimental demonstration and in-depth investigation of analytically designed anomalous reflection metagratings

机译:分析设计的异常反射迁移的实验演示和深入研究

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摘要

We present the design, fabrication, and experimental investigation of a printed circuit board metagrating (MG) for perfect anomalous reflection. The design follows our previously developed analytical formalism, resulting in a single-elementMG capable of unitary coupling of the incident wave to the specified (first-order) Floquet-Bloch (FB) mode while suppressing the specular reflection. We characterize the MG performance experimentally using a bistatic scattering pattern measurement, relying on an original beam-power integration approach for accurate evaluation of the coupling to the various modes across a wide frequency range. The results show that highly efficient wide-angle anomalous reflection is achieved, as predicted by the theory, with a relatively broadband response. In addition, the MG is found to perform well when illuminated from different angles, acting as a multichannel reflector, and to scatter efficiently also to higher-order FB modes at other frequencies, exhibiting multifunctional capabilities. Importantly, the merits of the utilized beam-integration approach, namely, its improved resilience to measurement inaccuracies or noise effects, and the implicit accommodation of different effective aperture sizes are emphasized, highly relevant in view of the numerous recent experimental reports on anomalous reflection metasurfaces. Finally, we discuss the source for losses associated with the MG; interestingly, we show that these correlate well with edge diffraction effects rather than (commonly assumed) power dissipation. These experimental results verify our theoretical synthesis scheme, showing that highly efficient anomalous reflection is achievable with a realistic fabricated MG, demonstrating the practical applicability and potential multifunctionality of analytically designed MGs for future wave-front manipulating devices.
机译:我们介绍了用于完美反常反射的印刷电路板转移(MG)的设计,制作和实验研究。该设计遵循了我们先前开发的分析形式,使单元素MG能够将入射波单一耦合到指定的(一阶)Floquet-Bloch(FB)模式,同时抑制镜面反射。我们使用双基地散射模式测量实验性地表征MG性能,这依赖于原始的射束功率积分方法来准确评估在宽频率范围内与各种模式的耦合。结果表明,如理论所预测的,在相对宽带响应的情况下实现了高效的广角异常反射。此外,发现MG在从不同角度照亮时表现良好,可以用作多通道反射器,并且在其他频率下也可以有效地散射到高阶FB模式,从而具有多功能功能。重要的是,强调了所采用的光束积分方法的优点,即它提高了对测量误差或噪声影响的适应能力,以及不同有效孔径尺寸的隐式适应性,鉴于最近关于反常反射超表面的大量实验报告,这些都是高度相关的。最后,我们讨论了与MG相关的损失来源;有趣的是,我们表明这些与边缘衍射效应(而不是(通常假定的)功耗)良好相关。这些实验结果验证了我们的理论合成方案,表明用实际制造的MG可以实现高效的异常反射,这证明了经过分析设计的MG的实用性和潜在的多功能性,可用于未来的波前操纵装置。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2019年第12期|125101.1-125101.15|共15页
  • 作者单位

    Technion Israel Inst Technol, Andrew & Erna Viterbi Fac Elect Engn, IL-3200003 Haifa, Israel|Adv Def Syst Ltd, Rafael, IL-31021 Haifa, Israel;

    Adv Def Syst Ltd, Rafael, IL-31021 Haifa, Israel;

    Adv Def Syst Ltd, Rafael, IL-31021 Haifa, Israel;

    Technion Israel Inst Technol, Andrew & Erna Viterbi Fac Elect Engn, IL-3200003 Haifa, Israel;

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