Xiong Han, Wu Ying-Bo, Dong Ji, Tang Ming-Chun, Jiang Yan-Nan, Zeng Xiao-Ping
Opt Express. 2018 Jan 22;26(2):1681-1688. doi: 10.1364/OE.26.001681.
A broadband tunable metamaterial graphene absorber is investigated in this paper. The unit cell of the proposed metamaterial graphene absorber is composed of four patch resonators. By tuning the chemical potential of graphene and the geometric size of each patch, the simulated total reflectivity is less than -10 dB from 22.02 to 36.61 THz and with the total thickness of 0.76 um (only 0.09λ at the lowest frequency). The analysis of the surface current, magnetic field and power flow distributions has been performed to better understand the absorption mechanism. Moreover, this proposed absorber achieves its bandwidth tunable characteristics through a voltage biasing of the graphene's Fremi level. This proposed metamaterial graphene absorber (MGA) could be used as smart absorbers, photovoltaic devices and tunable sensors.
本文研究了一种宽带可调谐超材料石墨烯吸收器。所提出的超材料石墨烯吸收器的单元由四个贴片谐振器组成。通过调整石墨烯的化学势和每个贴片的几何尺寸,模拟得到的总反射率在22.02至36.61太赫兹范围内小于-10分贝,总厚度为0.76微米(在最低频率处仅为0.09λ)。已对表面电流、磁场和功率流分布进行了分析,以更好地理解吸收机制。此外,该提出的吸收器通过对石墨烯费米能级进行电压偏置来实现其带宽可调特性。这种提出的超材料石墨烯吸收器(MGA)可作为智能吸收器、光伏器件和可调谐传感器。