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利用高效单层双光谱2位编码超表面实现对双频涡旋光束的完全控制。

Full control of dual-band vortex beams using a high-efficiency single-layer bi-spectral 2-bit coding metasurface.

作者信息

Xin Mingbo, Xie Rensheng, Zhai Guohua, Gao Jianjun, Zhang Dajun, Wang Xiong, An Sensong, Zheng Bowen, Zhang Hualiang, Ding Jun

出版信息

Opt Express. 2020 Jun 8;28(12):17374-17383. doi: 10.1364/OE.394571.

Abstract

Vortex beams (VBs) carrying orbital angular moment (OAM) modes have been proven to be promising resources for increasing communication capacity. Although considerable attention has been paid on metasurface-based VB generators due to the unprecedented advantages of metasurface, most applications are usually limited at a single band with a fixed OAM mode. In this work, an emerging dual-band reflection-type coding metasurface is proposed to mitigate these issues by newly engineered meta-atoms, which could achieve independent 2-bit phase modulations at two frequency bands. The proposed coding metasurface could efficiently realize and fully control dual-band VBs carrying frequency selective OAM modes under the linearly polarized incidence. As the first illustrative example, a dual-band VB generator with normal beam direction is fabricated and characterized at two widely used communication bands (Ku and Ka bands). Moreover, by encoding proper coding sequences, versatile beams carrying frequency selective OAM modes can be achieved. Therefore, by adding a gradient phase sequence to the first VB generator, the second one is designed to steer the generated beams to a preset direction, which could enable diverse scenarios. The measurement results of both VB generators agree very well with the numerical ones, validating the full control capability of the proposed approach.

摘要

携带轨道角动量(OAM)模式的涡旋光束(VBs)已被证明是增加通信容量的有前途的资源。尽管由于超表面具有前所未有的优势,基于超表面的VB发生器受到了广泛关注,但大多数应用通常局限于具有固定OAM模式的单个频段。在这项工作中,提出了一种新型的双频段反射型编码超表面,通过新设计的超原子来缓解这些问题,该超原子可以在两个频段实现独立的2位相位调制。所提出的编码超表面能够在线偏振入射下有效实现并完全控制携带频率选择性OAM模式的双频段VBs。作为第一个示例,制作了一个具有正常光束方向的双频段VB发生器,并在两个广泛使用的通信频段(Ku和Ka频段)进行了表征。此外,通过编码适当的编码序列,可以实现携带频率选择性OAM模式的多功能光束。因此,通过向第一个VB发生器添加梯度相位序列,设计了第二个VB发生器将生成的光束引导到预设方向,这可以实现多种场景。两个VB发生器测量结果与数值结果非常吻合,验证了所提方法的完全控制能力。

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