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基于超薄潘查拉特纳姆-贝里超表面的高效透明涡旋光束发生器

High-efficiency transparent vortex beam generator based on ultrathin Pancharatnam-Berry metasurfaces.

作者信息

Tang Shiwei, Cai Tong, Liang Jian-Gang, Xiao Yu, Zhang Cheng-Wu, Zhang Qing, Hu Ziyang, Jiang Tao

出版信息

Opt Express. 2019 Feb 4;27(3):1816-1824. doi: 10.1364/OE.27.001816.

Abstract

Vortex beam generators are promising to improve the transmission data rate and enlarge the communication capacity due to the fact that they inherently carry the orbital angular momentum (OAM). However, current available devices are limited because of high profiles and low efficiencies, especially for the transmissive case. Here, we propose a new strategy to design an ultrathin (0.07λ) transmissive Pancharatnam-Berry (PB) metasurface with nearly unit transmittance. The carefully optimized metasurface integrates an anisotropic crossbar structure with positive permittivity and a holey metallic ring resonator with negative permittivity based on certain criterions placed on both sides of a dielectric substrate, which realize an exact π phase difference due to the control of permittivities at both polarizations. As a proof of concept, a microwave vortex beam generator is designed, fabricated and experimentally characterized. Both measured far-field and near-field characterizations are in excellent agreement with numerical simulations, indicating that our transmissive PB meta-device (operating at 10.6 GHz) exhibits a maximum experimental efficiency of 87%. Our findings can motivate the realizations of high-performance transmissive PB meta-devices with a very low profile or operation at other frequency domains.

摘要

涡旋光束发生器有望提高传输数据速率并扩大通信容量,因为它们本身携带轨道角动量(OAM)。然而,由于外形较大且效率较低,特别是对于透射情况,目前可用的设备受到限制。在此,我们提出一种新策略,设计一种具有近乎单位透射率的超薄(0.07λ)透射式庞加莱 - 贝里(PB)超表面。经过精心优化的超表面基于放置在介电基板两侧的特定标准,将具有正介电常数的各向异性横杆结构与具有负介电常数的多孔金属环谐振器集成在一起,通过控制两个偏振方向的介电常数实现精确的π相位差。作为概念验证,设计、制作并对一个微波涡旋光束发生器进行了实验表征。测量的远场和近场表征与数值模拟结果非常吻合,表明我们的透射式PB超器件(工作在10.6 GHz)展现出87%的最大实验效率。我们的研究结果能够推动实现具有极低外形或在其他频域工作的高性能透射式PB超器件。

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