相图
赫巴德模型
凝聚态物理
维格纳晶体
物理
库仑
量子
量子霍尔效应
格子(音乐)
超晶格
填充系数
量子相
量子力学
相(物质)
量子相变
超导电性
电子
声学
作者
Haining Pan,Fengcheng Wu,S. Das Sarma
出处
期刊:Physical review
[American Physical Society]
日期:2020-11-05
卷期号:102 (20)
被引量:125
标识
DOI:10.1103/physrevb.102.201104
摘要
We theoretically study a generalized Hubbard model on Moir\'e superlattices of twisted bilayers, and find very rich filling-factor-dependent quantum phase diagrams tuned by interaction strength and twist angle. Strong long-range Coulomb interaction in the Moir\'e-Hubbard model induces Wigner crystals at a series of fractional filling factors. The effective lattice of the Wigner crystal is controlled by the filling factor, and can be triangle, rectangle, honeycomb, kagome, etc., providing a single platform to realize many different spin models on various lattices by simply tuning carrier density. In addition to Wigner crystals that are topologically trivial, interaction-induced Chern insulators emerge in the phase diagram. This finding paves a way for engineering interaction-induced quantum anomalous Hall effect in Moir\'e-Hubbard systems where the corresponding single-particle Moir\'e band is topologically trivial.
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