Sun Mengke, Lv Tianshuo, Liu Ziying, Wang Fatian, Li Wenjia, Zhang Yang, Zhu Zheng, Guan Chunying, Shi Jinhui
Opt Express. 2022 Aug 1;30(16):28829-28839. doi: 10.1364/OE.463833.
Coding metamaterials have offered unprecedented degrees of freedom to manipulate electromagnetic waves in time and frequency domains in terms of various coding sequences, however, it is still challenging to realize dynamic coding metamaterials in the terahertz range. Here, we propose VO-enabled transmission-reflection switchable coding terahertz metamaterials consisting of multilayered gold and VO patterns. The insulator-to-metal transition of VO leads to switch between the refractive and reflective scattering beams by changing the temperature. The four 2-bit elements are used to construct coding metasurface-based OAM generator with l = 1. Remarkably, the transmission-reflection switching functionality of the coding metasurface can be achieved at different frequencies. In addition, the novel designs in our work can achieve EM waves manipulation and provide a useful method to dynamically switch transmission-reflection response in the THz frequency regime.
编码超材料通过各种编码序列在时间和频率域中为操纵电磁波提供了前所未有的自由度,然而,在太赫兹范围内实现动态编码超材料仍然具有挑战性。在此,我们提出了由多层金和VO图案组成的基于VO的透射-反射可切换编码太赫兹超材料。VO的绝缘体-金属转变通过改变温度导致折射和反射散射光束之间的切换。四个2比特元件用于构建基于编码超表面的l = 1的轨道角动量(OAM)发生器。值得注意的是,编码超表面的透射-反射切换功能可以在不同频率下实现。此外,我们工作中的新颖设计可以实现电磁波操纵,并为在太赫兹频率范围内动态切换透射-反射响应提供一种有用的方法。