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五重层菱方石墨烯莫尔结构中的量子反常霍尔相理论

Theory of Quantum Anomalous Hall Phases in Pentalayer Rhombohedral Graphene Moiré Structures.

作者信息

Dong Zhihuan, Patri Adarsh S, Senthil T

机构信息

Department of Physics, <a href="https://ror.org/042nb2s44">Massachusetts Institute of Technology</a>, Cambridge, Massachusetts 02139, USA.

出版信息

Phys Rev Lett. 2024 Nov 15;133(20):206502. doi: 10.1103/PhysRevLett.133.206502.

Abstract

Remarkable recent experiments on the moiré structure formed by pentalayer rhombohedral graphene aligned with a hexagonal boron nitride substrate report the discovery of a zero field fractional quantum Hall effect. These "(fractional) quantum anomalous Hall" [(F)QAH] phases occur for one sign of a perpendicular displacement field, and correspond, experimentally, to full or partial filling of a valley polarized Chern-1 band. Such a band is absent in the noninteracting band structure. Here we show that electron-electron interactions play a crucial role, and present microscopic theoretical calculations demonstrating the emergence of a nearly flat, isolated, Chern-1 band and FQAH phases in this system. We also study the four- and six-layer analogs and identify parameters where a nearly flat isolated Chern-1 band emerges which may be suitable to host FQAH physics.

摘要

近期关于与六方氮化硼衬底对齐的五层菱面体石墨烯形成的莫尔结构的显著实验报告了零场分数量子霍尔效应的发现。这些“(分数)量子反常霍尔”[(F)QAH]相在垂直位移场的一个符号下出现,并且在实验上对应于谷极化陈数为1的能带的完全或部分填充。在非相互作用能带结构中不存在这样的能带。在这里,我们表明电子 - 电子相互作用起着关键作用,并给出微观理论计算,证明在该系统中出现了一个近乎平坦、孤立的陈数为1的能带和FQAH相。我们还研究了四层和六层类似物,并确定了出现近乎平坦孤立陈数为1的能带的参数,这些参数可能适合承载FQAH物理。

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