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魔角扭曲双层石墨烯中的弱场霍尔电阻率与自旋-谷味对称性破缺

Weak-Field Hall Resistivity and Spin-Valley Flavor Symmetry Breaking in Magic-Angle Twisted Bilayer Graphene.

作者信息

Xie Ming, MacDonald A H

机构信息

Physics Department, University of Texas at Austin, Austin, Texas 78712, USA.

出版信息

Phys Rev Lett. 2021 Nov 5;127(19):196401. doi: 10.1103/PhysRevLett.127.196401.

Abstract

Near a magic twist angle, the lowest energy conduction and valence bands of bilayer graphene moiré superlattices become extremely narrow. The band dispersion that remains is sensitive to the moiré's strain pattern, nonlocal tunneling between layers, and filling-factor-dependent Hartree and exchange band renormalizations. In this Letter, we analyze the influence of these band-structure details on the pattern of flavor symmetry breaking observed in this narrow band system and on the associated pattern of Fermi surface reconstructions revealed by weak-field Hall and Shubnikov-de Haas magnetotransport measurements.

摘要

在接近一个神奇的扭曲角时,双层石墨烯莫尔超晶格的最低能量导带和价带变得极其狭窄。剩余的能带色散对莫尔应变模式、层间非局域隧穿以及依赖填充因子的哈特里和交换能带重整化很敏感。在本快报中,我们分析了这些能带结构细节对在这个窄带系统中观察到的味对称性破缺模式以及由弱场霍尔和舒布尼科夫-德哈斯磁输运测量揭示的相关费米面重构模式的影响。

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