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All-Dielectric Kissing-Dimer Metagratings for Asymmetric High Diffraction

机译:用于不对称高衍射的全介电接吻二聚体

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摘要

Transcending the common perceptions of phase-gradient metasurfaces, metagratings emerge as a new paradigm for wavefront manipulation directly on the desired diffraction order with ultrahigh deflection angles. However, previous metagratings rely on directional scattering caused by multiresonant interference between multiple separate inclusions, of which the high diffraction efficiencies are only optimized with limited bandwidth and incident angle tolerance. Here, a kind of asymmetric kissing-dimer metagratings that can achieve broadband high diffraction efficiencies at nearly all incident angles are proposed and experimentally realized. The building block is formed by touching two titanium dioxide polygon pillars with different geometries, which empowers highly directional scattering patterns in nearly the entire visible range. Such kissing-dimer metagratings possess maximum diffraction up to 90% and flat-top bandwidth of about 250 nm. This study provides a transformative scheme for ultrahigh performance beam steering devices underpinning various intriguing applications in imaging, sensing, and communication.
机译:超越相位梯度超表面的一般认识,以超高偏转角直接在所需的衍射级上直接进行波阵面操纵的超新范式应运而生。但是,先前的元光栅依赖于由多个单独的夹杂物之间的多共振干扰引起的方向性散射,其中仅在有限的带宽和入射角公差的情况下才能优化其高衍射效率。在此,提出并通过实验实现了一种可以在几乎所有入射角处实现宽带高衍射效率的非对称接吻二聚体迁移。通过触摸两个具有不同几何形状的二氧化钛多边形柱形成构件,从而在几乎整个可见范围内实现高度定向的散射图案。这样的接吻二聚体转移具有最大达90%的最大衍射和约250 nm的平顶带宽。这项研究为超高性能光束转向设备提供了一种转换方案,为成像,传感和通信中的各种有趣应用提供了基础。

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