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扭曲的WSe₂中的可调谐双层哈伯德模型

A tunable bilayer Hubbard model in twisted WSe.

作者信息

Xu Yang, Kang Kaifei, Watanabe Kenji, Taniguchi Takashi, Mak Kin Fai, Shan Jie

机构信息

School of Applied and Engineering Physics, Cornell University, Ithaca, NY, USA.

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, China.

出版信息

Nat Nanotechnol. 2022 Sep;17(9):934-939. doi: 10.1038/s41565-022-01180-7. Epub 2022 Aug 1.

Abstract

Moiré materials with flat electronic bands provide a highly controllable quantum system for studies of strong-correlation physics and topology. In particular, angle-aligned heterobilayers of semiconducting transition metal dichalcogenides with large band offset realize the single-band Hubbard model. Introduction of a new layer degree of freedom is expected to foster richer interactions, enabling Hund's physics, interlayer exciton condensation and new superconducting pairing mechanisms to name a few. Here we report competing electronic states in twisted AB-homobilayer WSe, which realizes a bilayer Hubbard model in the weak interlayer hopping limit for holes. By layer-polarizing holes via a perpendicular electric field, we observe a crossover from an excitonic insulator to a charge-transfer insulator at a hole density of ν = 1 (in units of moiré density), a transition from a paramagnetic to an antiferromagnetic charge-transfer insulator at ν = 2 and evidence for a layer-selective Mott insulator at 1 < ν < 2. The unique coupling of charge and spin to external electric and magnetic fields also manifests a giant magnetoelectric response. Our results establish a new solid-state simulator for the bilayer Hubbard model Hamiltonian.

摘要

具有平坦电子能带的莫尔材料为研究强关联物理和拓扑学提供了一个高度可控的量子系统。特别是,具有大带隙的半导体过渡金属二卤化物的角度对齐异质双层实现了单带哈伯德模型。引入新的层自由度有望促进更丰富的相互作用,从而实现洪德物理、层间激子凝聚和新的超导配对机制等。在此,我们报道了扭曲的AB同质双层WSe₂中的竞争电子态,它在空穴的弱层间跳跃极限下实现了双层哈伯德模型。通过垂直电场对空穴进行层极化,我们观察到在空穴密度ν = 1(以莫尔密度为单位)时从激子绝缘体到电荷转移绝缘体的转变,在ν = 2时从顺磁电荷转移绝缘体到反铁磁电荷转移绝缘体的转变,以及在1 < ν < 2时层选择性莫特绝缘体的证据。电荷和自旋与外部电场和磁场的独特耦合还表现出巨大的磁电响应。我们的结果为双层哈伯德模型哈密顿量建立了一个新的固态模拟器。

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