Zhang Zhongtao, Wang Jiafu, Fu Xinmin, Jia Yuxiang, Chen Hongya, Feng Mingde, Zhu Ruichao, Qu Shaobo
Department of Basic Science, Air Force Engineering University, Xi'an, 710051, Shanxi, People's Republic of China.
Sci Rep. 2021 Jan 12;11(1):585. doi: 10.1038/s41598-020-79945-0.
In this paper, we propose a method of designing ultra-wideband single-layer metasurfaces for cross-polarization conversion, via the introduction of Fano resonances. By adding sub-branches onto the unit cell structure, the induced surface currents are disturbed, leading to coexistence of both bright and dark modes at higher frequencies. Due to the strong interaction between the two modes, Fano resonance can be produced. In this way, five resonances in all are produced by the single-layer metasurface. The first four are conventional and are generated by electric and magnetic resonances, whereas the fifth one is caused by Fano resonance, which further extends the bandwidth. A prototype was designed, fabricated and measured to verify this method. Both the simulated and measured results show that a 1:4.4 bandwidth can be achieved for both x- and y-polarized waves, with almost all polarization conversion ratio (PCR) above 90%. This method provides an effective alternative to metasurface bandwidth extension and can also be extended to higher bands such as THz and infrared frequencies.
在本文中,我们提出了一种通过引入法诺共振来设计用于交叉极化转换的超宽带单层超表面的方法。通过在单元结构上添加子分支,感应表面电流受到干扰,导致在较高频率下亮模式和暗模式共存。由于这两种模式之间的强相互作用,可以产生法诺共振。通过这种方式,单层超表面总共产生了五个共振。前四个是传统的,由电共振和磁共振产生,而第五个是由法诺共振引起的,这进一步扩展了带宽。设计、制作并测量了一个原型来验证该方法。仿真和测量结果均表明,对于x极化波和y极化波均可实现1:4.4的带宽,且几乎所有的极化转换率(PCR)均高于90%。该方法为超表面带宽扩展提供了一种有效的替代方案,并且还可以扩展到太赫兹和红外频率等高波段。