Tang Shiwei, Li Xike, Pan Weikang, Zhou Jun, Jiang Tao, Ding Fei
Opt Express. 2019 Feb 18;27(4):4281-4291. doi: 10.1364/OE.27.004281.
Vortex beam has attracted growing attention in recent years due to its remarkable abilities in the communication system since it is believed to be an effective way to improve the channel capacity efficiency. However, available vortex beam generators suffer from the issues of complex configurations, low efficiency as well as narrow bandwidths, especially for the transmissive case. Here, we proposed a broadband transmissive metasurface to generate vortex beam with l=1 in a broad band ranging from 8GHz to 13 GHz. We enhance the working bandwidth by carefully designing the meta-atoms which provide high transmittances along with similar slopes of the phase responses within a large frequency interval. More importantly, the designed vortex beam generator exhibits very high working efficiencies (more than 83% within the whole working band). Our finding opens a door for the design of high-efficiency broadband transmissive vortex beam generators and operating at other frequency domains.
近年来,涡旋光束因其在通信系统中的卓越能力而备受关注,因为人们认为它是提高信道容量效率的有效途径。然而,现有的涡旋光束发生器存在结构复杂、效率低以及带宽窄等问题,特别是对于透射情况。在此,我们提出了一种宽带透射超表面,以在8GHz至13GHz的宽频带内产生l = 1的涡旋光束。我们通过精心设计超原子来提高工作带宽,这些超原子在大频率区间内提供高透射率以及具有相似斜率的相位响应。更重要的是,所设计的涡旋光束发生器具有非常高的工作效率(在整个工作频段内超过83%)。我们的发现为高效宽带透射涡旋光束发生器的设计以及在其他频域的应用打开了一扇门。