双层石墨烯
凝聚态物理
物理
电子能带结构
双层
电子结构
异质结
扫描隧道光谱
扫描隧道显微镜
石墨烯
分子物理学
量子力学
化学
膜
生物化学
作者
Zhiming Zhang,Yimeng Wang,Kenji Watanabe,Takashi Taniguchi,Keiji Ueno,Emanuel Tutuc,Brian J. LeRoy
出处
期刊:Nature Physics
[Springer Nature]
日期:2020-07-06
卷期号:16 (11): 1093-1096
被引量:56
标识
DOI:10.1038/s41567-020-0958-x
摘要
The crystal structure of a material creates a periodic potential that electrons move through giving rise to the electronic band structure of the material. When two-dimensional materials are stacked, the twist angle between the layers becomes an additional degree freedom for the resulting heterostructure. As this angle changes, the electronic band structure is modified leading to the possibility of flat bands with localized states and enhanced electronic correlations. In transition metal dichalcogenides, flat bands have been theoretically predicted to occur for long moir\'e wavelengths over a range of twist angles around 0 and 60 degrees giving much wider versatility than magic angle twisted bilayer graphene. Here we show the existence of a flat band in the electronic structure of 3{\deg} and 57.5{\deg} twisted bilayer WSe2 samples using scanning tunneling spectroscopy. Direct spatial mapping of wavefunctions at the flat band energy have shown that the flat bands are localized differently for 3{\deg} and 57.5{\deg}, in excellent agreement with first-principle density functional theory calculations.
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