Han Bowen, Li Sijia, Li Zhuoyue, Huang Guoshuai, Tian Jianghao, Cao Xiangyu
Opt Express. 2021 Jun 21;29(13):19643-19654. doi: 10.1364/OE.425787.
We propose a chiral metasurface (CMS) that exhibits asymmetric transmission (AT) of double circularly and linearly polarized waves at the same frequency band. In order to realize the manipulation of electromagnetic (EM) waves in the whole space, the unit cell of CMS consists of three layers of dielectric substrate and four layers of metal patches. The Z-shaped chiral micro-structure and a grating-like micro-structure are proposed and designed to achieve AT. The simulated results show that the x-polarized wave that is incident along one direction can be transmitted into the right-hand circularly polarized (RHCP) wave and the left-hand circularly polarized (LHCP) wave that is incident along the opposite direction can be reflected as the LHCP wave in the frequency band of 4.69GHz-5.84 GHz. The maximum chirality response can be reflected by AT and circular dichroism (CD) and they can reach up to 0.38 and 0.75, respectively. In addition, we also produced the sample of CMS, and the experimental results are in good agreement with the simulated results.
我们提出了一种手性超表面(CMS),它在同一频段对双圆极化波和线极化波表现出非对称传输(AT)。为了实现对全空间中电磁波(EM)的操控,CMS的单元结构由三层介电基板和四层金属贴片组成。提出并设计了Z形手性微结构和类光栅微结构以实现非对称传输。模拟结果表明,在4.69GHz - 5.84 GHz频段内,沿一个方向入射的x极化波可透射为右旋圆极化(RHCP)波,而沿相反方向入射的左旋圆极化(LHCP)波可反射为左旋圆极化波。非对称传输和圆二色性(CD)可反映出最大手性响应,它们分别可达0.38和0.75。此外,我们还制作了CMS样品,实验结果与模拟结果吻合良好。