论文标题

紧张的扭曲双层石墨烯中的巨型非线性大厅效应

Giant nonlinear Hall effect in strained twisted bilayer graphene

论文作者

Zhang, Cheng-Ping, Xiao, Jiewen, Zhou, Benjamin T., Hu, Jin-Xin, Xie, Ying-Ming, Yan, Binghai, Law, K. T.

论文摘要

最近的研究表明,当与六角形硝酸硼对齐时,扭曲的双层石墨烯(TBG)中的Moiré平坦带可以获取非平凡的浆果曲率[1,2],可以表现为3/4填充附近的相关Chern Insulator [3,4]。在这项工作中,我们表明,莫伊尔乐队中的较大浆果曲率在紧张的TBG中导致强烈的非线性霍尔(NLH)效应,并具有一般的填充因子。在弱单轴应变$ \ sim 0.1 \%$下,表征非线性霍尔响应的浆果曲率偶极子可以大于$ \ sim $200Å,超过了两个以前已知的非线性霍尔材料[5-14]的值。系统地进一步研究了巨型NLH效应作为电控,应变和扭角的函数的依赖性。重要的是,我们指出的是,由于近乎平坦的Moiré频段对菌株诱导的对称性破裂的强烈敏感性,巨大的NLH效应通常在魔法角度接近旋转角度出现。我们的结果将TBG建立为可调NLH效应的实用平台和由非平凡浆果阶段驱动的新型运输现象。

Recent studies have shown that moiré flat bands in a twisted bilayer graphene(TBG) can acquire nontrivial Berry curvatures when aligned with hexagonal boron nitride substrate [1, 2], which can be manifested as a correlated Chern insulator near the 3/4 filling [3, 4]. In this work, we show that the large Berry curvatures in the moiré bands lead to strong nonlinear Hall(NLH) effect in a strained TBG with general filling factors. Under a weak uniaxial strain $\sim 0.1\%$, the Berry curvature dipole which characterizes the nonlinear Hall response can be as large as $\sim$ 200Å, exceeding the values of all previously known nonlinear Hall materials [5-14] 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 moiré 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.

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