Fang Bo, Chen Lin, Deng Yuqiang, Jing Xufeng, Li Xue
University of Shanghai for Science and Technology No. 516 JungGong Road Shanghai 200093 China.
China Jiliang University No. 258 XueYuan Road Hangzhou 310018 China
RSC Adv. 2018 Jun 19;8(40):22361-22369. doi: 10.1039/c8ra03758b.
Multiband high index of refraction can be realized by thin ring-type terahertz metamaterials composed of multilayer coupled unit cells. We have focused on the numerical investigation of this type of a metamaterial. By drastically decreasing the diamagnetic effect with a thin metallic structure in the unit cell and by increasing the effective permittivity through strong capacitive coupling, a bandwidth of 1.5 THz with an index of more than 24 can be achieved using a single-layer thin brick-type metamaterial. The refractive index peak is 35. Then, we design a ring-type metamaterial structure, achieving a refractive index of 91 at about 0.45 THz, which is due to a decrease in the diamagnetic effect with smaller area surrounded by toroidal currents. Based on the coupling effects of double layer ring-type metamaterials or single-layer double ring-type structures, the refractive index peaks reach 43.2 and 18.68 at 0.43 THz and 0.92 THz, respectively. A three-layer ring-type metamaterial structure is proposed to obtain three band high index metamaterials.
由多层耦合单元组成的薄环形太赫兹超材料可以实现多频段高折射率。我们专注于对这类超材料进行数值研究。通过在单元胞中使用薄金属结构大幅降低抗磁效应,并通过强电容耦合提高有效介电常数,使用单层薄砖型超材料可以实现带宽为1.5太赫兹且折射率超过24的结果。折射率峰值为35。然后,我们设计了一种环形超材料结构,在约0.45太赫兹处实现了91的折射率,这是由于环形电流所包围的面积减小导致抗磁效应降低。基于双层环形超材料或单层双环型结构的耦合效应,折射率峰值分别在0.43太赫兹和0.92太赫兹处达到43.2和18.68。为了获得三频段高折射率超材料提出了一种三层环形超材料结构。