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首页> 外文期刊>Optics Letters >Highly efficient wavefront manipulation in terahertz based on plasmonic gradient metasurfaces
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Highly efficient wavefront manipulation in terahertz based on plasmonic gradient metasurfaces

机译:基于等离激元梯度超表面的太赫兹波前处理

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Polarization conversion efficiency is vitally important to highly efficient wavefront manipulation based on phase discontinuities. However, previous single-layer phase gradient metasurfaces have suffered from low polarization conversion efficiency (at most 25%). Here we present a three-layer structure to enhance polarization conversion efficiency. The average efficiency is 76% for circularly polarized incident light converted to its opposite handedness. By arraying metallic antennas with varied optical axes for circularly polarized incident light, the efficiency of anomalous refraction is apparently increased, and the focused intensity of flat lenses can be significantly enhanced in the terahertz regime. It is expected that this scheme has potential applications in detection, focusing, and imaging.
机译:极化转换效率对于基于相位不连续的高效波前操纵至关重要。然而,先前的单层相梯度超颖表面已经具有低的偏振转换效率(至多25%)。在这里,我们提出了一种三层结构来增强偏振转换效率。圆偏振入射光转换为相反方向的平均效率为76%。通过排列具有变化的光轴的金属天线以圆偏振入射光,异常折射的效率明显提高,并且在太赫兹状态下,平板透镜的聚焦强度可以显着提高。预期该方案在检测,聚焦和成像中具有潜在的应用。

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