JOURNAL ARTICLE

Broadband tunable electromagnetically induced transparency analogue metamaterials based on graphene in terahertz band

Yue WangYanbing LengLi WangLianhe DongLiu Shun-RuiJun WangYanjun Sun

Year: 2018 Journal:   Applied Physics Express Vol: 11 (6)Pages: 062001-062001   Publisher: Institute of Physics

Abstract

Most of the actively controlled electromagnetically induced transparency analogue (EIT-like) metamaterials were implemented with narrowband modulations. In this paper, a broadband tunable EIT-like metamaterial based on graphene in the terahertz band is presented. It consists of a cut wire as the bright resonator and two couples of H-shaped resonators in mirror symmetry as the dark resonators. A broadband tunable property of transmission amplitude is realized by changing the Fermi level of graphene. Furthermore, the geometries of the metamaterial structure are optimized to achieve the ideal curve through the simulation. Such EIT-like metamaterials proposed here are promising candidates for designing active wide-band slow-light devices, wide-band terahertz active filters, and wide-band terahertz modulators.

Keywords:
Terahertz radiation Metamaterial Electromagnetically induced transparency Broadband Resonator Narrowband Optoelectronics Split-ring resonator Materials science Optics Slow light Tunable metamaterials Metamaterial absorber Graphene Physics Photonic crystal Nanotechnology

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Citation History

Topics

Metamaterials and Metasurfaces Applications
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Plasmonic and Surface Plasmon Research
Physical Sciences →  Engineering →  Biomedical Engineering
Millimeter-Wave Propagation and Modeling
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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