全空间双层模式2位编码超表面全息图

IF 2.2 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Liang Dong, Xu Sheng Li, Lei Zhu, Shah Nawaz Burokur, Qun Wu, Xu Min Ding
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引用次数: 3

摘要

超表面在全息成像中起着灵活操纵和控制电磁波前的重要作用。然而,基于超表面的全息图在空间利用和效率方面存在弱点。在这项工作中,提出了一种基于单层衬底上双面镀铜图案的2位编码超表面,其中电磁波可以在全空间中独立操作。当被x偏振波照射时,编码超表面的共偏振反射和交叉偏振透射分量可以在两个不同的频率上同时被操纵。15ghz时共极化反射效率大于0.7,14ghz时交叉极化传输效率达到0.4。所提出的编码超表面全息图可以在不改变入射波偏振态的情况下同时重建两种不同的全息图像,同时避免了不同通道之间的串扰。制作并测量了编码超表面样品,实验结果与数值模拟结果吻合较好。提出的全息成像概念在全息显示和信息加密领域具有巨大的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full-Space Double-Layer Patterned 2-Bit Coding Metasurface Hologram

Metasurfaces play an important role in holographic imaging to flexibly manipulate and control electromagnetic wave fronts. However, metasurface-based holograms present weaknesses in space utilization and efficiency. In this work, a 2-bit coding metasurface based on double-face copper-cladded patterns on a single-layer substrate is proposed, where the electromagnetic waves can be independently manipulated in full space. When illuminated by an x-polarized wave, the co-polarized reflection and cross-polarized transmission components of the coding metasurface can be simultaneously manipulated at two distinct frequencies. The co-polarized reflection efficiency is greater than 0.7 at 15 GHz, and the cross-polarized transmission efficiency attains to 0.4 at 14 GHz. The proposed coding metasurface hologram can simultaneously reconstruct two different holographic images without changing the polarization state of the incident wave, while avoiding crosstalk between different channels. A coding metasurface sample is fabricated and measured, and the experimental results agree well with the numerically simulated ones. The proposed hologram imaging concept highlights great potential applications in the fields of holographic display and information encryption.

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来源期刊
Annalen der Physik
Annalen der Physik 物理-物理:综合
CiteScore
4.50
自引率
8.30%
发文量
202
审稿时长
3 months
期刊介绍: Annalen der Physik (AdP) is one of the world''s most renowned physics journals with an over 225 years'' tradition of excellence. Based on the fame of seminal papers by Einstein, Planck and many others, the journal is now tuned towards today''s most exciting findings including the annual Nobel Lectures. AdP comprises all areas of physics, with particular emphasis on important, significant and highly relevant results. Topics range from fundamental research to forefront applications including dynamic and interdisciplinary fields. The journal covers theory, simulation and experiment, e.g., but not exclusively, in condensed matter, quantum physics, photonics, materials physics, high energy, gravitation and astrophysics. It welcomes Rapid Research Letters, Original Papers, Review and Feature Articles.
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