Zhang Liang, Guo Jie, Ding Tongyu
School of Information Engineering, Jimei University, Xiamen, 361021, China.
Sci Rep. 2021 Mar 11;11(1):5766. doi: 10.1038/s41598-021-85374-4.
In this paper, an anisotropic coding metasurface is proposed to achieve dual-mode vortex beam generator by independently manipulating the orthogonally linearly polarized waves. The metasurface is composed of ultrathin single-layer ground-backed Jerusalem cross structure, which can provide complete and independent control of the orthogonally linearly polarized incident waves with greatly simplified design process. As proof of concept, a metasurface is designed to generate vortex beams with different topological charges under orthogonal polarizations operating at 15 GHz. Experimental measurements performed on fabricated prototype reveal high quality, and show good agreements with theoretical designs and simulation results. Such ultrathin dual-mode vortex beam generator may find potential applications in wireless communication systems in microwave region.
本文提出了一种各向异性编码超表面,通过独立操纵正交线偏振波来实现双模涡旋光束发生器。该超表面由超薄单层接地背靠背耶路撒冷十字结构组成,它可以在大大简化设计过程的情况下,对正交线偏振入射波进行完全独立的控制。作为概念验证,设计了一种超表面,以在15GHz的正交极化下产生具有不同拓扑电荷的涡旋光束。对制作的原型进行的实验测量显示出高质量,并且与理论设计和仿真结果吻合良好。这种超薄双模涡旋光束发生器可能在微波区域的无线通信系统中找到潜在应用。