Generation of parabolic beam using an amplitude and phase modulated metasurface

IF 2.3 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Danni Yuan, Shixing Yu, Na Kou
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引用次数: 0

Abstract

In this work, non-diffraction parabolic beam is generated using a double-layer transmission metasurface in the microwave frequency range. A transmissive unit cell with bilayered substrates and three metallic layers is designed. By controlling the orientation angle and the opening angle of the intermediate ∈-shaped metallic layer, transmission amplitude from 0 to 1 and continuous phase shift from 0° to 360° can be modulated simultaneously. To experimentally verify the proposed concept and design, a transmissive metasurface is fabricated and measured at 20 GHz. The simulated and measured results are in good agreement with the theoretical results, and prove the generated parabolic beam still maintained non-diffraction and self-healing characteristics within the maximum non-diffraction distance of 40λ. The generated microwave parabolic beam with its properties can be applied to improving the distance and efficiency of WPT and near field modulation of complex EM waves.

利用振幅和相位调制元面生成抛物面光束
在这项研究中,利用双层透射元表面在微波频率范围内产生了非衍射抛物面光束。设计了一个具有双层基底和三层金属的透射单元。通过控制中间∈形金属层的方向角和开口角,可以同时调制 0 到 1 的传输振幅和 0° 到 360° 的连续相移。为了在实验中验证所提出的概念和设计,我们制作了一个透射元表面,并在 20 GHz 频率下进行了测量。模拟和测量结果与理论结果非常吻合,证明所产生的抛物面波束在最大非衍射距离 40λ 范围内仍能保持非衍射和自愈特性。所产生的微波抛物面波束及其特性可用于提高 WPT 和复合电磁波近场调制的距离和效率。
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来源期刊
Physics Letters A
Physics Letters A 物理-物理:综合
CiteScore
5.10
自引率
3.80%
发文量
493
审稿时长
30 days
期刊介绍: Physics Letters A offers an exciting publication outlet for novel and frontier physics. It encourages the submission of new research on: condensed matter physics, theoretical physics, nonlinear science, statistical physics, mathematical and computational physics, general and cross-disciplinary physics (including foundations), atomic, molecular and cluster physics, plasma and fluid physics, optical physics, biological physics and nanoscience. No articles on High Energy and Nuclear Physics are published in Physics Letters A. The journal''s high standard and wide dissemination ensures a broad readership amongst the physics community. Rapid publication times and flexible length restrictions give Physics Letters A the edge over other journals in the field.
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