等离子体子
双层石墨烯
石墨烯
凝聚态物理
扭转
表面等离子体子
物理
材料科学
光学
纳米技术
几何学
数学
作者
Fengrui Hu,Suprem R. Das,Yilong Luan,Ting‐Fung Chung,Yong P. Chen,Zhe Fei
标识
DOI:10.1103/physrevlett.119.247402
摘要
We report a systematic plasmonic study of twisted bilayer graphene (TBLG)-two graphene layers stacked with a twist angle. Through real-space nanoimaging of TBLG single crystals with a wide distribution of twist angles, we find that TBLG supports confined infrared plasmons that are sensitively dependent on the twist angle. At small twist angles, TBLG has a plasmon wavelength comparable to that of single-layer graphene. At larger twist angles, the plasmon wavelength of TBLG increases significantly with apparently lower damping. Further analysis and modeling indicate that the observed twist-angle dependence of TBLG plasmons in the Dirac linear regime is mainly due to the Fermi-velocity renormalization, a direct consequence of interlayer electronic coupling. Our work unveils the tailored plasmonic characteristics of TBLG and deepens our understanding of the intriguing nano-optical physics in novel van der Waals coupled two-dimensional materials.
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