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用于近场纳米成像的双门控石墨烯器件

Dual-Gated Graphene Devices for Near-Field Nano-imaging.

作者信息

Sunku Sai S, Halbertal Dorri, Engelke Rebecca, Yoo Hyobin, Finney Nathan R, Curreli Nicola, Ni Guangxin, Tan Cheng, McLeod Alexander S, Lo Chiu Fan Bowen, Dean Cory R, Hone James C, Kim Philip, Basov D N

机构信息

Department of Physics, Columbia University, New York, New York 10027, United States.

Department of Applied Physics and Applied Mathematics, Columbia University, New York, New York 10027, United States.

出版信息

Nano Lett. 2021 Feb 24;21(4):1688-1693. doi: 10.1021/acs.nanolett.0c04494. Epub 2021 Feb 15.

Abstract

Graphene-based heterostructures display a variety of phenomena that are strongly tunable by electrostatic local gates. Monolayer graphene (MLG) exhibits tunable surface plasmon polaritons, as revealed by scanning nano-infrared experiments. In bilayer graphene (BLG), an electronic gap is induced by a perpendicular displacement field. Gapped BLG is predicted to display unusual effects such as plasmon amplification and domain wall plasmons with significantly larger lifetime than MLG. Furthermore, a variety of correlated electronic phases highly sensitive to displacement fields have been observed in twisted graphene structures. However, applying perpendicular displacement fields in nano-infrared experiments has only recently become possible [Li, H.; 2020, 20, 3106-3112]. In this work, we fully characterize two approaches to realizing nano-optics compatible top gates: bilayer MoS and MLG. We perform nano-infrared imaging on both types of structures and evaluate their strengths and weaknesses. Our work paves the way for comprehensive near-field experiments of correlated phenomena and plasmonic effects in graphene-based heterostructures.

摘要

基于石墨烯的异质结构展现出多种可通过静电局部栅极进行强烈调控的现象。扫描纳米红外实验表明,单层石墨烯(MLG)呈现出可调谐的表面等离激元极化激元。在双层石墨烯(BLG)中,垂直位移场会诱导出一个电子能隙。带隙的BLG预计会展现出诸如等离激元放大和畴壁等离激元等异常效应,其寿命比MLG长得多。此外,在扭曲的石墨烯结构中观察到了多种对位移场高度敏感的关联电子相。然而,在纳米红外实验中施加垂直位移场直到最近才成为可能[Li, H.; 2020, 20, 3106 - 3112]。在这项工作中,我们全面表征了实现纳米光学兼容顶栅的两种方法:双层MoS和MLG。我们对这两种结构都进行了纳米红外成像,并评估了它们的优缺点。我们的工作为基于石墨烯的异质结构中关联现象和等离激元效应的全面近场实验铺平了道路。

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