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Spin-controlled wavefront shaping with plasmonic chiral geometric metasurfaces

机译:具有等离子手性几何形表面的自旋控制波阵面整形

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摘要

Metasurfaces, as a two-dimensional (2D) version of metamaterials, have drawn considerable attention for their revolutionary capability in manipulating the amplitude, phase, and polarization of light. As one of the most important types of metasurfaces, geometric metasurfaces provide a versatile platform for controlling optical phase distributions due to the geometric nature of the generated phase profile. However, it remains a great challenge to design geometric metasurfaces for realizing spin-switchable functionalities because the generated phase profile with the converted spin is reversed once the handedness of the incident beam is switched. Here, we propose and experimentally demonstrate chiral geometric metasurfaces based on intrinsically chiral plasmonic stepped nanoapertures with a simultaneously high circular dichroism in transmission (CDT) and large cross-polarization ratio (CPR) in transmitted light to exhibit spin-controlled wavefront shaping capabilities. The chiral geometric metasurfaces are constructed by merging two independently designed subarrays of the two enantiomers for the stepped nanoaperture. Under a certain incident handedness, the transmission from one subarray is allowed, while the transmission from the other subarray is strongly prohibited. The merged metasurface then only exhibits the transmitted signal with the phase profile of one subarray, which can be switched by changing the incident handedness. Based on the chiral geometric metasurface, both chiral metasurface holograms and the spin-dependent generation of hybrid-order Poincaré sphere beams are experimentally realized. Our approach promises further applications in spin-controlled metasurface devices for complex beam conversion, image processing, optical trapping, and optical communications.
机译:作为超材料的二维(2D)版本,超表面因其在操纵光的振幅,相位和偏振方面的革命性能力而受到了广泛的关注。作为最重要的超表面类型之一,由于生成的相位轮廓的几何性质,几何超表面提供了用于控制光学相位分布的通用平台。但是,设计几何超表面来实现自旋可切换功能仍然是一个巨大的挑战,因为一旦转换了入射光束的旋向,则具有转换后的自旋的生成相位轮廓就会反转。在这里,我们提出并实验性地证明了基于固有手性等离激元阶梯形纳米孔的手性几何形表面,同时在透射光中具有较高的圆二色性(CDT)和较大的交叉极化比(CPR),以展现自旋控制的波前成形能力。通过合并用于阶梯状纳米孔的两个对映体的两个独立设计的子阵列来构建手性几何超表面。在一定的事件习惯下,允许从一个子阵列进行传输,而强烈禁止从另一子阵列进行传输。然后,合并的超表面仅显示具有一个子阵列的相位轮廓的传输信号,可以通过更改入射惯性来切换该信号。基于手性几何形表面,通过实验实现了手性形表面全息图和混合自旋庞加莱球面光束的自旋相关生成。我们的方法有望在自旋控制超颖表面设备中进一步应用,以进行复杂的光束转换,图像处理,光阱和光通信。

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