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双栅极调谐下双层石墨烯电导率的纳米红外表征

Nanoinfrared Characterization of Bilayer Graphene Conductivity under Dual-Gate Tuning.

作者信息

Luo Weiwei, Kuzmenko Alexey B, Qi Jialin, Zhang Ni, Wu Wei, Ren Mengxin, Zhang Xinzheng, Cai Wei, Xu Jingjun

机构信息

The Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics, and TEDA Institute of Applied Physics, Nankai University, Tianjin 300457, People's Republic of China.

Department of Quantum Matter Physics, University of Geneva, Quai Ernest-Ansermet 24, 1211 Geneva, Switzerland.

出版信息

Nano Lett. 2021 Jun 23;21(12):5151-5157. doi: 10.1021/acs.nanolett.1c01167. Epub 2021 Jun 1.

Abstract

Dual-gate tuning on two-dimensional (2D) heterostructures can provide independent control of the carrier concentration and interlayer electrostatic potential, yielding novel electronic and optical properties. In this paper, by utilizing monolayer graphene as both the top gate and a plasmon wavelength magnifier, the optical properties of bilayer graphene (BLG) under dual-gate are quantitatively investigated by nanoinfrared imaging. The hybrid optical modes in the vertically coupled two-layer system are imaged from scattering-type scanning near-field microscopy (s-SNOM). Moreover, plasmon dispersion behaviors under varied dual-gate tuning are explored and explained well with theoretical ones employing tight binding approximation, which reveals the flexibility in individually manipulating the Fermi energy and bandgap. Especially, electron-hole asymmetry in BLG is verified from experiments. Our studies pave route for quantitative near-field investigation of superlattice, topological boundaries, and other emergent phenomena in graphene-based 2D heterostructures.

摘要

二维(2D)异质结构上的双栅极调谐可以独立控制载流子浓度和层间静电势,从而产生新颖的电学和光学特性。在本文中,通过将单层石墨烯用作顶栅极和等离子体波长放大器,利用纳米红外成像对双栅极下双层石墨烯(BLG)的光学特性进行了定量研究。从散射型扫描近场显微镜(s-SNOM)成像了垂直耦合双层系统中的混合光学模式。此外,探索了不同双栅极调谐下的等离子体色散行为,并用采用紧束缚近似的理论很好地解释了这些行为,这揭示了单独操纵费米能量和带隙的灵活性。特别是,通过实验验证了BLG中的电子-空穴不对称性。我们的研究为基于石墨烯的二维异质结构中的超晶格、拓扑边界和其他新兴现象的定量近场研究铺平了道路。

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