Tunable Nearly Perfect Absorber Based on Graphene Metamaterials at the Mid-Infrared Region

被引:0
作者
Li-Ping Sun
Xiang Zhai
Qi Lin
Gui-Dong Liu
Ling-Ling Wang
机构
[1] Hunan University,School of physics and Microelectronic and Key Laboratory for Micro
来源
Plasmonics | 2018年 / 13卷
关键词
Perfect absorber; Field enhancement; Graphene metamaterial; Surface plasmon polaritons; Mid-infrared;
D O I
暂无
中图分类号
学科分类号
摘要
We propose the idea of a tunable nearly perfect absorber based on graphene metamaterial consisting of a periodically arranged graphene ribbons (bright mode) and the inverse slots in the thin graphene film (dark mode). The absorption peak has a narrow linewidth of 160 nm and the absorbance approaching to 97.12%. The fascinating absorption feature not merely due to plasmonically induced absorption arising from destructive interference between the bright and dark mode but also the metamaterial absorption. We have testified numerically that the electric fields are highly confined inside the slot. The mid-IR absorption spectrum can be dynamically tuned by a small change in the chemical potential of graphene, in addition to varying geometrical parameters. Our paper considers a situation that represents an intermediate plasmonic coupling regime, between near-field and far-field coupling. Such absorber possesses potential for applications in mid-IR nanophotonic devices.
引用
收藏
页码:1043 / 1048
页数:5
相关论文
共 146 条
[11]  
Polini M(2013)The interaction of light and graphene: basics, devices, and applications [J] Proc IEEE 101 1717-423
[12]  
Novoselov K(2013)Transformation optics using graphene [J] Science 332 1291-105
[13]  
Xia F(2014)Enhancement of near-infrared absorption in graphene with metal gratings [J] Appl Phys Lett 105 031905-387
[14]  
Wang H(2016)Excitation of crest and trough surface plasmon modes in in-plane bended graphene nanoribbons [J] Opt Express 24 427-1431
[15]  
Xiao D(2016)Realization of graphene-based tunable Plasmon-induced transparency by the dipole-dipole coupling [J] Plasmonics 11 419-7813
[16]  
Dubey M(2016)Manipulating plasmonic waves transporting on graphene with graphene nanoribbon [J] Opt Laser Technol 64 101-2348
[17]  
Ramasubramaniam A(2015)Combined theoretical analysis for plasmon-induced transparency in integrated graphene waveguides with direct and indirect couplings [J] Europhys Lett 111 34004-521
[18]  
Avouris P(2016)Actively tunable Fano resonance based on a T-shaped graphene Nanodimer [J] Plasmonics 11 381-14878
[19]  
Freitag M(2015)Narrow-band Plasmonic filter based on graphene waveguide with asymmetrical structure [J] Plasmonics 10 1427-8248
[20]  
Javier F(2012)Excitation of plasmonic waves in graphene by guided-mode resonances [J] ACS Nano 6 7806-1140