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Planar Holographic Metasurfaces for Terahertz Focusing

机译:太赫兹聚焦的平面全息状况良好

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Scientists and laymen alike have always been fascinated by the ability of lenses and mirrors to control light. Now, with the advent of metamaterials and their two-dimensional counterpart metasurfaces, such components can be miniaturized and designed with additional functionalities, holding promise for system integration. To demonstrate this potential, here ultrathin reflection metasurfaces (also called metamirrors) designed for focusing terahertz radiation into a single spot and four spaced spots are proposed and experimentally investigated at the frequency of 0.35 THz. Each metasurface is designed using a computer-generated spatial distribution of the reflection phase. The phase variation within 360 deg is achieved via a topological morphing of the metasurface pattern from metallic patches to U-shaped and split-ring resonator elements, whose spectral response is derived from full-wave electromagnetic simulations. The proposed approach demonstrates a high-performance solution for creating low-cost and lightweight beam-shaping and beam-focusing devices for the terahertz band.
机译:科学家和行李队的相似始终被镜头和镜子控制光线的能力着迷。现在,随着超材料的出现及其二维配对元件,这些组件可以集小型化和设计,并设计具有额外的功能,并持有系统集成的承诺。为了证明这种潜力,在这里提出了用于将太赫兹辐射聚焦到单点和四个间隔斑点的超薄反射元件(也称为METAMIRRORE),并在0.35至THz的频率下进行实验研究。每个元质面都使用计算机产生的反射阶段的空间分布设计。通过从金属贴片到U形和分流环谐振器元件的金属贴片的拓扑形式实现360°内的相位变形,其光谱响应来自全波电磁模拟。该方法展示了用于为太赫兹带产生低成本和轻质光束整形和光束聚焦装置的高性能解决方案。

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