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首页> 外文期刊>Advanced Optical Materials >Flat Retroreflector Based on a Metasurface Doublet Enabling Reliable and Angle-Tolerant Free-Space Optical Link
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Flat Retroreflector Based on a Metasurface Doublet Enabling Reliable and Angle-Tolerant Free-Space Optical Link

机译:基于METASURFACE DOWBLET的扁平逆向反射仪启用可靠和可容沙性自由空间光学链路

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摘要

Facilitated by the ability to reflect radiation along its incident direction, retroreflectors have been perceived as a pivotal component for establishing reliable free-space optical links. However, conventional retroreflectors suffer from limited integration because of their bulky size, heavy weight, and nonplanar shape. Metasurface-based devices consisting of subwavelength nanostructures combine semiconductor manufacturing methods with nanophotonics, regarded as a new platform that outperforms geometrical optics. In this paper, a free-space optical link exploiting a flat retroreflector (FRR) based on metasurface doublet is proposed and realized at a telecommunications wavelength of 1550 nm. The top- and bottom-layer metasurfaces, comprising hydrogenated amorphous silicon nanopillars based on a meticulously tailored dielectric spacer of silica, achieve the functions of a transmissive Fourier lens and a concave mirror, respectively. The top transmissive metasurface performs a spatial Fourier transform and its inverse, while the bottom reflective metasurface imposes a spatially varying momentum for reflecting beams along their incident direction. As a proof of concept, the designed FRR, precisely created via lithographical nanofabrication, has been readily applied to forge a substantially reliable free-space optical link, featuring an enhanced angular tolerance of +/- 25 degrees. This work will initiate a positive prospect for the cooperation between metasurface-based devices and wireless optical communications.
机译:通过反映沿其入射方向反射辐射的能力促进,已被认为是用于建立可靠的自由空间光学链路的枢转成分。然而,由于其庞大的尺寸,重量,重量和非平面形状,传统的逆向反射器具有有限的集成。由亚波长纳米结构组成的基于元的基于表面的器件与纳米光源的半导体制造方法组合,被认为是几何光学器件优于几何光学的新平台。在本文中,提出了一种基于元曲面双峰的扁平回荷光(FRR)的自由空间光学链路,并在电信波长为1550nm的情况下实现。基于诸如二氧化硅的精细定制的介电间隔物,包括氢化非晶硅纳米粒子的顶层和底层元件,分别达到透射傅里叶透镜和凹形镜的功能。顶部透射元曲面执行空间傅里叶变换及其逆,而底部反射元表面施加空间变化的动量,用于沿其入射方向反射光束。作为概念证据,已经容易地应用于通过光刻纳米制作精确地创建的设计FRR以伪造基本上可靠的自由空间光学链路,具有增强的+/- 25度的角度容差。这项工作将启动正面基于表面和无线光通信之间的合作的积极前景。

著录项

  • 来源
    《Advanced Optical Materials》 |2021年第21期|2100796.1-2100796.7|共7页
  • 作者单位

    Kwangwoon Univ Dept Elect Engn Seoul 01897 South Korea|Kwangwoon Univ Nano Device Applicat Ctr Seoul 01897 South Korea;

    Kwangwoon Univ Dept Elect Engn Seoul 01897 South Korea|Kwangwoon Univ Nano Device Applicat Ctr Seoul 01897 South Korea;

    Kwangwoon Univ Dept Elect Engn Seoul 01897 South Korea|Kwangwoon Univ Nano Device Applicat Ctr Seoul 01897 South Korea;

    Australian Natl Univ Laser Phys Ctr Res Sch Phys Canberra ACT 2601 Australia;

    Kwangwoon Univ Dept Elect Engn Seoul 01897 South Korea|Kwangwoon Univ Nano Device Applicat Ctr Seoul 01897 South Korea;

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

    flat retroreflectors; free-space optical links; metasurface doublets; telecommunication wavelengths;

    机译:平面逆向反射器;自由空间光学链路;元曲面双板;电信波长;

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