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Giant nonlinear Hall effect in strained twisted bilayer graphene

ORAL

Abstract

Recent studies have shown that moire flat bands in twisted bilayer graphene(TBG) can acquire nontrivial Berry curvatures when aligned with hexagonal boron nitride substrate, which can be manifested as a correlated Chern insulator near the 3/4 filling. In this work, we show that the large Berry curvatures in the moire bands lead to strong nonlinear Hall(NLH) effect in a strained TBG with general filling factors. Under a weak uniaxial strain ~0.1%, the Berry curvature dipole which characterizes the nonlinear Hall response can be as large as ~ 200Å , exceeding the values of all previously known nonlinear Hall materials by two orders of magnitude. The dependence of the giant NLH effect as a function of electric gating, strain and twist angle is further investigated systematically. Importantly, we point out that the giant NLH effect appears generically for twist angle near the magic angle due to the strong susceptibility of nearly flat moire bands to symmetry breaking induced by strains. Our results establish TBG as a practical platform for tunable NLH effect and novel transport phenomena driven by nontrivial Berry phases.

Presenters

  • Cheng-Ping Zhang

    Hong Kong University of Science and Technology

Authors

  • Cheng-Ping Zhang

    Hong Kong University of Science and Technology

  • Jiewen Xiao

    Weizmann Institute of Science

  • ZHOU Tong Benjamin

    Hong Kong University of Science and Technology

  • Jinxin Hu

    Hong Kong University of Science and Technology

  • Yingming Xie

    Hong Kong University of Science and Technology

  • Binghai Yan

    Weizmann Institute of Science

  • Kam Tuen Law

    Hong Kong University of Science and Technology