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Three-Channel Metasurfaces for Simultaneous Meta-Holography and Meta-Nanoprinting: A Single-Cell Design Approach

机译:用于同步元全息和META-NANPRINTING的三声道元件:单细胞设计方法

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摘要

By virtue of the extraordinary capability of manipulating the polarization state, amplitude and phase of electromagnetic fields, metasurfaces can be employed to display holographic or nanoprinting images with unprecedented spatial resolution. Bringing holography and nanoprinting together is an effective way toward information multiplexing. However, current approaches mostly utilize interleaving or stacking nanostructures with different functionalities to construct multiplexed metasurfaces, hence they are equivalent to a combination of several metasurfaces and the information capacity of each metasurface remains unchanged. Here, by combining intensity modulation governed by Malus’s law with phase manipulation based on both geometric and propagation phases, a single-cell-designed metasurface for three-channel image displays is proposed. The new design strategy can significantly improve the information capacity since the extra phase modulation originates from the orientation degeneracy and dimension variation of nanostructures rather than multilayer or interleaving design. Specifically, a three-channel metasurface is experimentally demonstrated, which can simultaneously record a continuous grayscale nanoprinting image in the near field and project two independent holographic images in the far field. With the advantages of crosstalk-free and ultracompactness, the proposed three-channel metasurfaces can empower the design of multifunctional nano-optical elements for applications in image displays, optical anticounterfeiting, optical storage and many other related fields.
机译:借助于操纵偏振状态,电磁场的幅度和相位的特殊能力,可以采用元件来显示具有前所未有的空间分辨率的全息或纳米印刷图像。将全息照相和纳米孔纳入信息复用的有效方法。然而,电流方法主要利用具有不同函数的交织或堆叠纳米结构来构建多路复用的元锉,因此它们等同于几个元件的组合,并且每个元表面的信息容量保持不变。这里,通过基于几何和传播阶段的相位操纵组合由Malus定律控制的强度调制,提出了一种用于三通图像显示器的单电池设计的元表面。新的设计策略可以显着提高信息容量,因为额外的相位调制来自纳米结构的方向退化和尺寸变化而不是多层或交织设计。具体地,通过实验证明三声道的元表面,其可以在近场中同时记录连续的灰度纳图图像并在远场中投影两个独立的全息图像。凭借无串扰和超级化的优点,所提出的三通元质地可以赋予多功能纳米光学元件的设计,用于图像显示,光学射行,光存储等许多其他相关领域。

著录项

  • 来源
    《Laser & photonics reviews》 |2020年第6期|2000032.1-2000032.9|共9页
  • 作者单位

    Electronic Information School Wuhan University Wuhan 430072 China NOEIC State Key Laboratory of Optical Communication Technologies and Networks Wuhan Research Institute of Posts & Telecommunications Wuhan 430074 China;

    Suzhou Institute of Nano-Tech & Nano-Bionics Chinese Academy of Sciences Suzhou 215123 China;

    School of Physics and Technology Center for Nanoscience and Nanotechnology and Key Laboratory of Artificial Micro- and Nanostructures of Ministry of Education Wuhan University Wuhan 430072 China;

    NOEIC State Key Laboratory of Optical Communication Technologies and Networks Wuhan Research Institute of Posts & Telecommunications Wuhan 430074 China;

    School of Physics and Technology Center for Nanoscience and Nanotechnology and Key Laboratory of Artificial Micro- and Nanostructures of Ministry of Education Wuhan University Wuhan 430072 China;

    Electronic Information School Wuhan University Wuhan 430072 China;

    Electronic Information School Wuhan University Wuhan 430072 China;

    Electronic Information School Wuhan University Wuhan 430072 China;

    Suzhou Institute of Nano-Tech & Nano-Bionics Chinese Academy of Sciences Suzhou 215123 China;

    NOEIC State Key Laboratory of Optical Communication Technologies and Networks Wuhan Research Institute of Posts & Telecommunications Wuhan 430074 China;

    Electronic Information School Wuhan University Wuhan 430072 China NOEIC State Key Laboratory of Optical Communication Technologies and Networks Wuhan Research Institute of Posts & Telecommunications Wuhan 430074 China;

    School of Physics & Astronomy University of Birmingham Birmingham B15 2TT UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    information multiplexing; metaholography; metananoprinting; metasurfaces;

    机译:公吨。;

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