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Simultaneous Control of Light Polarization and Phase Distributions Using Plasmonic Metasurfaces

机译:使用等离子超表面同时控制光的偏振和相位分布

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摘要

Harnessing light for modern photonic applications often involves the control and manipulation of light polarization and phase. Traditional methods require a combination of multiple discrete optical components, each of which contributes to a specific functionality. Here, plasmonic metasurfaces are proposed that accomplish the simultaneous manipulation of polarization and phase of the transmitted light. Arbitrary spatial field distribution of the optical phase and polarization direction can be obtained. The multifunctional metasurfaces are validated by demonstrating a broadband near-perfect anomalous refraction with controllable linear polarization through introducing a constant phase gradient along the interface. Furthermore, the power of the proposed metasurfaces is demonstrated by generating a radially polarized beam. The new degrees of freedom of metasurfaces facilitate arbitrary manipulation of light and will profoundly affect a wide range of photonic applications.
机译:为现代光子应用利用光通常涉及光偏振和相位的控制和操纵。传统方法需要多个离散的光学组件的组合,每个组件都有助于实现特定的功能。在此,提出了等离子体超颖表面,该表面实现了对透射光的偏振和相位的同时操纵。可以获得光相位和偏振方向的任意空间场分布。通过沿界面引入恒定的相位梯度来演示具有可控线性偏振的宽带近乎完美的异常折射,从而验证了多功能超表面的有效性。此外,通过产生径向偏振光束来证明所提出的超表面的功率。超颖表面的新自由度有利于光的任意操纵,并将深刻影响广泛的光子应用。

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  • 来源
    《Advanced Functional Materials 》 |2015年第5期| 704-710| 共7页
  • 作者单位

    Laboratory of Weak Light Nonlinear Photonics Ministry of Education School of Physics and Teda Applied Physics Institute Nankai University Tianjin 300071, China;

    Laboratory of Weak Light Nonlinear Photonics Ministry of Education School of Physics and Teda Applied Physics Institute Nankai University Tianjin 300071, China;

    Beijing National Laboratory for Condensed Matter Physics Institute of Physics Chinese Academy of Sciences P.O.Box 603, Beijing 100190, China;

    Beijing National Laboratory for Condensed Matter Physics Institute of Physics Chinese Academy of Sciences P.O.Box 603, Beijing 100190, China;

    Laboratory of Weak Light Nonlinear Photonics Ministry of Education School of Physics and Teda Applied Physics Institute Nankai University Tianjin 300071, China;

    Laboratory of Weak Light Nonlinear Photonics Ministry of Education School of Physics and Teda Applied Physics Institute Nankai University Tianjin 300071, China;

    Beijing National Laboratory for Condensed Matter Physics Institute of Physics Chinese Academy of Sciences P.O.Box 603, Beijing 100190, China;

    Center for Integrated Nanotechnologies Los Alamos National Laboratory Los Alamos, NM 87545, USA;

    Laboratory of Weak Light Nonlinear Photonics Ministry of Education School of Physics and Teda Applied Physics Institute Nankai University Tianjin 300071, China;

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