Liu Shilei, Ouyang Chunmei, Yao Zhibo, Zhao Jing, Li Yanfeng, Feng Longcheng, Zhang Caihong, Jin Biaobing, Ma Jiajun, Li Hongyi, Liu Yi, Xu Quan, Han Jiaguang, Zhang Weili
Opt Express. 2022 Jul 18;30(15):28158-28169. doi: 10.1364/OE.464573.
Various kinds of metasurfaces have been proposed because they can be tailored to achieve the desired modulations on electromagnetic wave that do not occur in nature. Compared to conventional metamaterials, coding metasurfaces integrated with information science theory possess numerous distinctive advantages - simple design, time-saving and compatibility with digital devices. Here we propose terahertz multifunctional anisotropic reflective metasurfaces with a metal-insulator-metal cavity structure whose top constructional layer consists of a pair of gold arc-rings and a gold cut-wire located between them. Two different functions of narrow-band absorption and broadband polarization conversion are realized based on different coding matrices using the binary codes '0' and '1'. Furthermore, we integrate a specific coding metasurface with vanadium dioxide (VO) to realize a temperature-controlled active metasurface. Through the temperature change, dynamic functionalities switching between a narrow-band polarization converter with a polarization conversion ratio over 94% and an efficient low-pass filter are achieved under the phase transition of VO, and the active metasurface is polarization independent. The proposed coding metasurfaces are verified numerically and experimentally, and have promising applications in terahertz modulation and functional devices.
由于可以对各种超表面进行定制,以实现自然界中不存在的对电磁波的所需调制,因此人们提出了各种各样的超表面。与传统超材料相比,集成了信息科学理论的编码超表面具有许多独特优势——设计简单、节省时间且与数字设备兼容。在此,我们提出了一种具有金属-绝缘体-金属腔结构的太赫兹多功能各向异性反射超表面,其顶部结构层由一对金弧形环和位于它们之间的一根金切割线组成。基于使用二进制代码“0”和“1”的不同编码矩阵,实现了窄带吸收和宽带偏振转换这两种不同功能。此外,我们将特定的编码超表面与二氧化钒(VO)集成,以实现温度控制的有源超表面。通过温度变化,在VO的相变过程中实现了在偏振转换率超过94%的窄带偏振转换器和高效低通滤波器之间的动态功能切换,并且该有源超表面与偏振无关。所提出的编码超表面通过数值和实验得到了验证,在太赫兹调制和功能器件方面具有广阔的应用前景。