Liu Yang, Xu Xiaodan, Yang Donghao, Zhang Xinzheng, Ren Mengxin, Gong Nan, Cai Wei, Hassan Faheem, Zhu Zhimao, Drevenšek-Olenik Irena, Rupp Romano A, Xu Jingjun
Opt Express. 2020 Aug 17;28(17):24772-24788. doi: 10.1364/OE.398346.
Many plasmon-induced transparency (PIT) metamaterials previously reported had limited functions. Their tunabilities were realized by complex discrete structures, which greatly increased the difficulty and cost of device fabrication and adversely affected their resonance characteristics. It is an open question to adjust the Fermi levels of many graphene patterns with only a few in-plane electrodes. We propose and numerically study a novel electrically tunable and multifunctional trigate graphene metamaterial (TGGM) based on the concept of "Lakes of Wada". Benefiting from the trigate regulation, our proposed TGGM turns out to exhibit excellent characteristics, that can not only be used for terahertz band-stop filter, terahertz refractive index sensor, near-field optical switch, slow-light device, but also for double PIT window metamaterial with broad transparency windows and large tunable frequency range.
先前报道的许多表面等离激元诱导透明(PIT)超材料功能有限。它们的可调性是通过复杂的离散结构实现的,这大大增加了器件制造的难度和成本,并对其共振特性产生不利影响。仅用几个平面内电极来调节许多石墨烯图案的费米能级仍是一个悬而未决的问题。我们基于“和田湖”概念提出并数值研究了一种新型的电可调多功能三栅极石墨烯超材料(TGGM)。受益于三栅极调节,我们提出的TGGM表现出优异的特性,不仅可用于太赫兹带阻滤波器、太赫兹折射率传感器、近场光开关、慢光器件,还可用于具有宽透明窗口和大可调频率范围的双PIT窗口超材料。