Linder Jacob, Halterman Klaus
Department of Physics, NTNU, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.
Michelson Lab, Physics Division, Naval Air Warfare Center, China Lake, California 93555.
Sci Rep. 2016 Aug 24;6:31225. doi: 10.1038/srep31225.
We investigate the absorption properties of graphene-based anisotropic metamaterial structures where the metamaterial layer possesses an electromagnetic response corresponding to a near-zero permittivity. We find that through analytical and numerical studies, near perfect absorption arises over an unusually broad range of beam incidence angles. Due to the presence of graphene, the absorption is tunable via a gate voltage, providing dynamic control of the energy transmission. We show that this strongly enhanced absorption arises due to a coupling between light and a fast wave-mode propagating along the graphene/metamaterial hybrid.
我们研究了基于石墨烯的各向异性超材料结构的吸收特性,其中超材料层具有对应于近零介电常数的电磁响应。我们发现,通过分析和数值研究,在异常宽的光束入射角范围内出现了近乎完美的吸收。由于石墨烯的存在,吸收可通过栅极电压进行调节,从而实现对能量传输的动态控制。我们表明,这种强烈增强的吸收是由于光与沿石墨烯/超材料混合体传播的快波模式之间的耦合引起的。