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基于超表面的傅里叶透镜,由紧凑型等离子体光学天线馈电用于广角光束转向。

Metasurface-based Fourier lens fed by compact plasmonic optical antennas for wide-angle beam steering.

作者信息

Zhou Guangzhu, Qu Shi-Wei, Chen Baojie, Zeng Yuansong, Chan Chi Hou

出版信息

Opt Express. 2022 Jun 6;30(12):21918-21930. doi: 10.1364/OE.459553.

Abstract

A Fourier lens can perform the Fourier transform of an incident wavefront at the focal plane. This paper reports a metasurface-based Fourier lens fed by compact plasmonic optical antennas for wide-angle beam steering. The metasurface, composed of six elements with different configurations covering the 2π phase range, features a large field-of-view (FOV) of ±50°. A novel plasmonic optical antenna for broadside radiation is then designed as the feed source of the metasurface. The proposed antenna has ultra-compact size of 0.77λ × 1.4λ, and achieves a high directivity of 9.6 dB and radiation efficiency of over 80% at the wavelength of 1550 nm. Full-wave simulations are carried out to evaluate the performances of the designed metasurface-assisted beam steering device. The results show that this device can achieve a maximum directivity of 21.5 dB at broadside radiation. Compared to conventional Yagi-Uda antenna feed, a directivity enhancement of about 2.7 dB can be obtained, exhibiting a great superiority of the proposed feed antenna. In addition, a large beam steering range of ±50° can be achieved with an acceptable gain drop of 2.83 dB. With the advantages of wide beam steering range, good radiation characteristics, small footprint, and ease of integration, the proposed metasurface-assisted beam steering device would be a promising candidate for integrated photonic applications, including wireless optical communications, light detection and ranging, and augmented reality.

摘要

傅里叶透镜可以在焦平面上对入射波前进行傅里叶变换。本文报道了一种基于超表面的傅里叶透镜,由紧凑的等离子体光学天线馈电,用于广角波束控制。该超表面由六个具有不同配置的元件组成,覆盖2π相位范围,具有±50°的大视场(FOV)。然后设计了一种用于侧射辐射的新型等离子体光学天线作为超表面的馈源。所提出的天线尺寸超紧凑,为0.77λ×1.4λ,在1550nm波长处实现了9.6dB的高方向性和超过80%的辐射效率。进行了全波模拟以评估所设计的超表面辅助波束控制装置的性能。结果表明,该装置在侧射辐射时可实现21.5dB的最大方向性。与传统的八木-宇田天线馈源相比,可获得约2.7dB的方向性增强,显示出所提出的馈源天线的巨大优势。此外,在增益下降2.83dB可接受的情况下,可实现±50°的大波束控制范围。所提出的超表面辅助波束控制装置具有波束控制范围宽、辐射特性好、占地面积小和易于集成等优点,将是集成光子应用的一个有前途的候选方案,包括无线光通信、光探测与测距以及增强现实。

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