Berry连接和曲率
双层石墨烯
凝聚态物理
物理
量子霍尔效应
石墨烯
超晶格
偶极子
霍尔效应
曲率
量子力学
几何相位
磁场
几何学
数学
作者
Meizhen Huang,Zefei Wu,Xu Zhang,Xuemeng Feng,Zishu Zhou,Shi Wang,Yong Chen,Chun Cheng,Kai Sun,Zi Yang Meng,N. Wang
标识
DOI:10.1103/physrevlett.131.066301
摘要
Though the observation of the quantum anomalous Hall effect and nonlocal transport response reveals nontrivial band topology governed by the Berry curvature in twisted bilayer graphene, some recent works reported nonlinear Hall signals in graphene superlattices that are caused by the extrinsic disorder scattering rather than the intrinsic Berry curvature dipole moment. In this Letter, we report a Berry curvature dipole induced intrinsic nonlinear Hall effect in high-quality twisted bilayer graphene devices. We also find that the application of the displacement field substantially changes the direction and amplitude of the nonlinear Hall voltages, as a result of a field-induced sliding of the Berry curvature hotspots. Our Letter not only proves that the Berry curvature dipole could play a dominant role in generating the intrinsic nonlinear Hall signal in graphene superlattices with low disorder densities, but also demonstrates twisted bilayer graphene to be a sensitive and fine-tunable platform for second harmonic generation and rectification.
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