School of Electronic Engineering and Computer Sciences, Peking University , Beijing 100871, China.
Cooperative Innovation Centre of Terahertz Science , No.4, Section 2, North Jianshe Road,Chengdu 610054, China.
ACS Appl Mater Interfaces. 2017 Oct 18;9(41):36447-36455. doi: 10.1021/acsami.7b12468. Epub 2017 Oct 3.
We propose to design coding metasurfaces based on the Pancharatnam-Berry (PB) phase. The proposed PB coding metasurface could control circularly polarized components of incident waves, by encoding geometric phase into the orientation angle of coding particles to generate 1-bit and multibit phase responses. We perform digital convolution operations on scattering patterns of the PB coding metasurface to reach flexible controls of the circularly polarized waves, forming spin-controlled multiple beams with different polarizations in free space, such as pencil beams and vortex beams carrying orbital angular momentum. Both numerical and experimental results demonstrate the excellent performance of the PB coding metasurface, which opens a pathway to novel types of multibeam generations and provides an effective way to expand the beam coverage for wireless communication applications.
我们提出基于潘查拉瓦-贝里(PB)相位设计编码超表面。所提出的 PB 编码超表面可以通过将几何相位编码到编码粒子的取向角中,来控制入射波的圆偏振分量,从而产生 1 位和多位数相响应。我们对 PB 编码超表面的散射图案进行数字卷积操作,以实现对圆偏振波的灵活控制,在自由空间中形成具有不同偏振的自旋控制多波束,例如具有轨道角动量的铅笔束和涡旋束。数值和实验结果都证明了 PB 编码超表面的卓越性能,这为新型多波束产生开辟了道路,并为无线通信应用提供了扩展波束覆盖的有效方法。