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A Focusing Circular-Polarization THz Beam Splitter Based on a Self-Complementary Metasurface

机译:基于自互补元曲面的聚焦圆极化THz分束器

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Quasi-optical polarization beam splitters are important components of terahertz instrumentation widely used in interferometric and polarimetric measurements. Recently metasurfaces, i.e., two-dimensional periodic or quasi-periodic optically dense structures composed of unit cells with subwavelength dimensions, have been shown to operate as compact and efficient beam splitters. Typically, their design was based on careful optimization of anisotropic metal or dielectric resonant scatterers confined in each unit cell. In this work, we propose and experimentally demonstrate a simple and useful approach to designing circular-polarization beam splitters taking advantage of intrinsically frequency-independent properties of single-layer self-complementary metasurfaces (SCMSs). Theoretically, when illuminated with a circularly polarized beam, any SCMS at any frequency transmits a copolarized beam with a complex transmission coefficient of 1/2. At the same time, a cross-polarized beam of the same magnitude is produced, with a transmission phase that can be controlled at every point of a metasurface aperture. In this work, to split the copolarized and cross-polarized transmitted beams, we spatially modulate this phase by constructing a spatially nonuniform metasurface of self-complementary unit cells. With this approach, we experimentally demonstrate a focusing circular-polarization beam splitter operating near 0.345 THz.
机译:准光偏振束分离器是太赫兹仪器的重要组成部分,广泛用于干涉和偏振测量。最近的元件,即由具有副主长尺寸的单元电池组成的二维周期性或准周期性光学致密的结构,已被示出为紧凑且有效的分束器。通常,它们的设计基于在每个单元电池中限制的各向异性金属或介电共振散射体的仔细优化。在这项工作中,我们提出并通过实验展示了设计循环偏振束分离器的简单而有用的方法,利用单层自互补元件(SCMSS)的内在频率无关的性质。理论上,当用圆偏振光束照射时,任何频率的任何SCM都会传输具有1/2的复杂传输系数的共偏振光束。同时,产生相同幅度的十字极化光束,其具有可以在元表面孔的每个点控制的传输阶段。在这项工作中,为了分离共化和交叉偏振的透射光束,我们通过构建自互补单元电池的空间不均匀的元表面来在空间上调节该阶段。通过这种方法,我们通过实验展示了一个聚焦圆极化分束器,在0.345至THz附近。

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