论文标题

与任意堆叠的扭曲石墨烯多层的手性分解

Chiral Decomposition of Twisted Graphene Multilayers with Arbitrary Stacking

论文作者

Zhang, ShengNan, Xie, Bo, Wu, QuanSheng, Liu, Jianpeng, Yazyev, Oleg V.

论文摘要

我们制定了手性分解规则,该规则控制着一个扭曲的$ N+M $多层石墨烯配置的广泛家族的电子结构,这些石墨烯配置结合了任意堆叠顺序和相互扭曲。我们表明,在手性限制中的魔法角度,此类系统的低能带是由手性伪旋转双线组成的,这些双键双子在莫伊尔超级晶格电位引起的每个山谷中都充满了两个平坦的带。分析分析由基于现实的参数化的显式数值计算支持。我们进一步表明,应用垂直位移字段可以在伪旋转双线和两个平坦的频段之间打开能量差距,从而使平面频段可以携带非零谷地Chern数字。这些结果为通用扭曲石墨烯多层的各种拓扑和相关状态的合理设计提供了指南。

We formulate the chiral decomposition rules that govern the electronic structure of a broad family of twisted $N+M$ multilayer graphene configurations that combine arbitrary stacking order and a mutual twist. We show that at the magic angle in the chiral limit the low-energy bands of such systems are composed of chiral pseudospin doublets which are energetically entangled with two flat bands per valley induced by the moiré superlattice potential. The analytic analysis is supported by explicit numerical calculations based on realistic parameterization. We further show that applying vertical displacement fields can open up energy gaps between the pseudospin doublets and the two flat bands, such that the flat bands may carry nonzero valley Chern numbers. These results provide guidelines for the rational design of various topological and correlated states in generic twisted graphene multilayers.

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