等离子体子
超材料
诺共振
石墨烯
红外线的
光电子学
材料科学
光子超材料
光学
物理
纳米技术
作者
S. Hossein Mousavi,Iskandar Kholmanov,Kamil Boratay Alici,David Purtseladze,Nihal Arju,Kaya Tatar,David Y. Fozdar,Ji Won Suk,Yufeng Hao,Alexander B. Khanikaev,Rodney S. Ruoff,Gennady Shvets
出处
期刊:Nano Letters
[American Chemical Society]
日期:2013-02-12
卷期号:13 (3): 1111-1117
被引量:254
摘要
Graphene is widely known for its anomalously strong broadband optical absorptivity of 2.3% that enables seeing its single-atom layer with the naked eye. However, in the mid-infrared part of the spectrum graphene represents a quintessential lossless zero-volume plasmonic material. We experimentally demonstrate that, when integrated with Fano-resonant plasmonic metasurfaces, single-layer graphene (SLG) can be used to tune their mid-infrared optical response. SLG's plasmonic response is shown to induce large blue shifts of the metasurface's resonance without reducing its spectral sharpness. This effect is explained by a generalized perturbation theory of SLG-metamaterial interaction that accounts for two unique properties of the SLG that set it apart from all other plasmonic materials: its anisotropic response and zero volume. These results pave the way to using gated SLG as a platform for dynamical spectral tuning of infrared metamaterials and metasurfaces.
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