首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Ultrathin planar chiral metasurface for controlling gradient phase discontinuities of circularly polarized waves
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Ultrathin planar chiral metasurface for controlling gradient phase discontinuities of circularly polarized waves

机译:用于控制圆极化波梯度相位不连续的超薄平面手性超颖表面

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摘要

We develop a gradient phase discontinuities ultrathin planar metasurface based on chiral branched gammadion structure (CBGS) that provides extreme control of electromagnetic wavefronts across single-sheet design. The introduction of the branch can provide antiparallel magnetic moment, which tunes the chirality of the CBGS. In the CBGS metasurface, the transmission phase of a circularly polarized wave can be varied from -180 degrees to +180 degrees. We experimentally demonstrate a beam-refracting CBGS metasurface with refracting a normally incident plane wave to an angle of 17 degrees. The performances of the proposed metasurface at oblique incidence are also presented. The CBGS metasurface can find a wide range of applications over the entire electromagnetic spectrum including single-surface lenses, fully controlling light in direction, and polarization controlling devices.
机译:我们基于手性支化的gammadion结构(CBGS)开发了一种梯度相不连续性超薄平面超表面,该结构可在单片设计中提供对电磁波阵面的极端控制。引入分支可以提供反平行的磁矩,从而调节CBGS的手性。在CBGS超表面中,圆偏振波的传输相位可以在-180度到+180度之间变化。我们通过实验证明了光束折射CBGS超表面,将垂直入射的平面波折射到17度角。还介绍了斜入射时所提出的超颖表面的性能。 CBGS超表面可以在整个电磁光谱中找到广泛的应用,包括单面透镜,完全控制方向的光和偏振控制设备。

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