作者
Nicholas Dale, Ryo Mori, M Iqbal Bakti Utama, Jonathan D Denlinger, Conrad Stansbury, Claudia G Fatuzzo, Sihan Zhao, Kyunghoon Lee, Takashi Taniguchi, Kenji Watanabe, Chris Jozwiak, Aaron Bostwick, Eli Rotenberg, Roland J Koch, Feng Wang, Alessandra Lanzara
发表日期
2022/1/19
期刊
npj Quantum Materials
卷号
7
期号
1
页码范围
9
出版商
Nature Publishing Group UK
简介
Electron-hole asymmetry is a fundamental property in solids that can determine the nature of quantum phase transitions and the regime of operation for devices. The observation of electron-hole asymmetry in graphene and recently in twisted graphene and moiré heterostructures has spurred interest into whether it stems from single-particle effects or from correlations, which are core to the emergence of intriguing phases in moiré systems. Here, we report an effective way to access electron-hole asymmetry in 2D materials by directly measuring the quasiparticle self-energy in graphene/Boron Nitride field-effect devices. As the chemical potential moves from the hole to the electron-doped side, we see an increased strength of electronic correlations manifested by an increase in the band velocity and inverse quasiparticle lifetime. These results suggest that electronic correlations intrinsically drive the electron-hole …
引用总数
2021202220232024252
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N Dale, R Mori, MIB Utama, JD Denlinger, C Stansbury… - npj Quantum Materials, 2022