超晶格
凝聚态物理
石墨烯
位移场
拓扑(电路)
物理
电场
Chern类
领域(数学)
材料科学
几何学
量子力学
纯数学
有限元法
组合数学
热力学
数学
作者
Xiangyan Han,Qianling Liu,Yijie Wang,Ruirui Niu,Zhuangzhuang Qu,Zhiyu Wang,Zhuoxian Li,Chunrui Han,Kenji Watanabe,Takashi Taniguchi,Zhida Song,Jianpeng Liu,Jinhai Mao,Zheng Han,Bheema Lingam Chittari,Jeil Jung,Zizhao Gan,Jianming Lü
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-05-15
卷期号:24 (21): 6286-6295
标识
DOI:10.1021/acs.nanolett.4c00948
摘要
Moiré superlattices have become a fertile playground for topological Chern insulators, where the displacement field can tune the quantum geometry and Chern number of the topological band. However, in experiments, displacement field engineering of spontaneous symmetry-breaking Chern bands has not been demonstrated. Here in a rhombohedral trilayer graphene moiré superlattice, we use a thermodynamic probe and transport measurement to monitor the Chern number evolution as a function of the displacement field. At a quarter filling of the moiré band, a novel Chern number of three is unveiled to compete with the well-established number of two upon turning on the electric field and survives when the displacement field is sufficiently strong. The transition can be reconciled by a nematic instability on the Fermi surface due to the pseudomagnetic vector field potentials associated with moiré strain patterns. Our work opens more opportunities to active control of Chern numbers in van der Waals moiré systems.
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