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用于宽带圆极化解耦光束和轨道角动量产生的增材制造多材料超薄超表面

Additively Manufactured Multi-Material Ultrathin Metasurfaces for Broadband Circular Polarization Decoupled Beams and Orbital Angular Momentum Generation.

作者信息

Zhu Jianfeng, Yang Yang, Hu Nathan, Liao Shaowei, Nulman Jaim

机构信息

School of Electrical and Data Engineering, University of Technology Sydney, Ultimo, Sydney, NSW 2007, Australia.

Rosenberger Technologies Australia, 5/13 Boundary Rd, Northmead, NSW 2152, Australia.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 15;13(49):59460-59470. doi: 10.1021/acsami.1c16493. Epub 2021 Dec 2.

DOI:10.1021/acsami.1c16493
PMID:34856100
Abstract

Controlling the wavefront and manipulating the polarization of the electromagnetic wave using an ultrathin flat device are highly desirable in many emerging fields. To shape the wavefront between two decoupled orthogonal circular polarization states, that is, the right-hand circular polarization (RCP) and the left-hand circular polarization (LCP), most state-of-the-art metasurfaces (MSs) combine the propagation phase and Pancharatnam-Berry phase into meta-atoms. This article proposes a different strategy to fully decouple the LCP and RCP and control their wavefronts independently. By taking advantage of the conductive and dielectric multi-material-integrated additive manufacturing technique, the proposed transmissive MS has an ultrathin thickness (0.11 free-space wavelength) and controls the LCP and RCP wavefronts independently under linearly polarized incidence illumination. The proposed meta-atom consists of a receiving antenna on the top, a transmitting antenna at the bottom with a strip-line connecting them. The strip-line introduces the same phase shifts for both RCP and LCP waves, while the transmitting antenna with in-plane rotation leads to the opposite phase shifts for RCP and LCP waves. Therefore, the phase delays from the strip-line and the angular rotation of the transmitting antenna provide two degrees of freedom, enabling independent beam shaping of LCP and RCP waves. Two MSs with different functionalities are printed for proof-of-concept, and the performances are experimentally verified.

摘要

在许多新兴领域中,使用超薄平面器件来控制波前并操纵电磁波的极化是非常可取的。为了在两个解耦的正交圆极化状态之间塑造波前,即右旋圆极化(RCP)和左旋圆极化(LCP),大多数最先进的超表面(MSs)将传播相位和庞加莱 - 贝里相位结合到超原子中。本文提出了一种不同的策略,以完全解耦LCP和RCP并独立控制它们的波前。通过利用导电和介电多材料集成增材制造技术,所提出的透射式MS具有超薄厚度(0.11自由空间波长),并在线偏振入射照明下独立控制LCP和RCP波前。所提出的超原子由顶部的接收天线、底部的发射天线以及连接它们的带状线组成。带状线对RCP和LCP波引入相同的相移,而具有平面内旋转的发射天线会导致RCP和LCP波产生相反的相移。因此,带状线的相位延迟和发射天线的角度旋转提供了两个自由度,从而能够对LCP和RCP波进行独立的波束整形。为了验证概念,打印了两个具有不同功能的MSs,并通过实验验证了其性能。

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