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用于同时进行偏振转换和光束转向的功能性超表面四分之一波片

Functional Metasurface Quarter-Wave Plates for Simultaneous Polarization Conversion and Beam Steering.

作者信息

Deng Yadong, Wu Cuo, Meng Chao, Bozhevolnyi Sergey I, Ding Fei

机构信息

Centre for Nano Optics, University of Southern Denmark, Campusvej 55, Odense M DK-5230, Denmark.

Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu 610054, People's Republic of China.

出版信息

ACS Nano. 2021 Nov 23;15(11):18532-18540. doi: 10.1021/acsnano.1c08597. Epub 2021 Nov 15.

Abstract

The capability to manipulate the polarization state of light at the nanoscale is of paramount importance in many emerging research areas ranging from optical communication to quantum information processing. Gap-surface plasmon (GSP) metasurfaces, which provide advantages and abilities of molding reflected fields, have been demonstrated excellently suited for integration of multifunctional polarization optics into a single device. Here, we establish a versatile GSP metasurface platform based on nanoscale quarter-wave plates (nano-QWPs) that enable efficient circular-to-linear polarization conversion along with the complete phase control over reflected fields. Capitalizing on the nano-QWP design, we demonstrate, both theoretically and experimentally, how resonance and geometric phases can be used in concert to achieve independent and simultaneous phase modulation of both co- and cross-polarized circularly polarized (CP) waves by realizing arbitrary beam steering of co- and cross-polarized CP channels in a broadband near-infrared range. The GSP metasurface platform established in our work provides versatile and flexible solutions to enrich multiple functionalities for diversified metasurface-based polarization optics exploited in modern integrated photonic devices and systems.

摘要

在从光通信到量子信息处理等许多新兴研究领域中,在纳米尺度上操纵光的偏振态的能力至关重要。间隙表面等离子体(GSP)超表面具有塑造反射场的优势和能力,已被证明非常适合将多功能偏振光学器件集成到单个设备中。在这里,我们基于纳米级四分之一波片(nano-QWP)建立了一个通用的GSP超表面平台,该平台能够实现高效的圆偏振到线偏振转换,并对反射场进行完全相位控制。利用nano-QWP设计,我们在理论和实验上都证明了如何通过在宽带近红外范围内实现共偏振和交叉偏振圆偏振(CP)通道的任意光束转向,将共振相位和几何相位协同使用,以实现共偏振和交叉偏振CP波的独立且同时的相位调制。我们工作中建立的GSP超表面平台提供了通用且灵活的解决方案,以丰富现代集成光子器件和系统中基于超表面的偏振光学器件的多种功能。

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