论文标题

成像3D重建的WSE2/WS2超级晶格中的Moiré平坦乐队

Imaging moiré flat bands in 3D reconstructed WSe2/WS2 superlattices

论文作者

Li, Hongyuan, Li, Shaowei, Naik, Mit H., Xie, Jingxu, Li, Xinyu, Wang, Jiayin, Regan, Emma, Wang, Danqing, Zhao, Wenyu, Zhao, Sihan, Kahn, Salman, Yumigeta, Kentaro, Blei, Mark, Taniguchi, Takashi, Watanabe, Kenji, Tongay, Sefaattin, Zettl, Alex, Louie, Steven G., Wang, Feng, Crommie, Michael F.

论文摘要

Moiré超级晶格在过渡金属二色元(TMD)异质结构中,由于狭窄的Moiré平面带和强,远距离的库仑相互作用的相互作用,可以托管新型相关的量子现象1-5。然而,仍然缺乏对原子重建的Moiré超级晶格和由此产生的扁平带的微观知识,这对于对相关Moiré现象的基本理解和控制至关重要。在这里,我们通过比较高质量去除的TMD Hetrostructure设备与TMDMoiré超望远镜的AB Initio模拟的高质量去除型TMD异质结构设备的扫描隧道光谱(STS)进行定量研究三维(3D)重建的WSE2/WS2Moiré超晶格的Moiré平坦波段。在我们的WSE2/WS2Moiré异质结构中确定了强大的3D屈曲重建,并伴随着大型面积重新分布。 STS成像表明,这会导致异质结构的价带边缘的一个非常狭窄且高度局部的K-PointMoiré平面带。在具有不同程度的定位的不同能量下观察到了一系列的Moiré平坦带。我们的观察结果与以前的简化理论模型相矛盾,但与从头算模拟进行了定量一致,这些模拟完全捕获了3D结构重建。在这里,应变重新分布和3D屈曲占据了有效的Moiré潜力,并在Brillouin区域K点产生了Moiré平面带。

Moiré superlattices in transition metal dichalcogenide (TMD) heterostructures can host novel correlated quantum phenomena due to the interplay of narrow moiré flat bands and strong, long-range Coulomb interactions1-5. However, microscopic knowledge of the atomically-reconstructed moiré superlattice and resulting flat bands is still lacking, which is critical for fundamental understanding and control of the correlated moiré phenomena. Here we quantitatively study the moiré flat bands in three-dimensional (3D) reconstructed WSe2/WS2 moiré superlattices by comparing scanning tunneling spectroscopy (STS) of high quality exfoliated TMD heterostructure devices with ab initio simulations of TMD moiré superlattices. A strong 3D buckling reconstruction accompanied by large in-plane strain redistribution is identified in our WSe2/WS2 moiré heterostructures. STS imaging demonstrates that this results in a remarkably narrow and highly localized K-point moiré flat band at the valence band edge of the heterostructure. A series of moiré flat bands are observed at different energies that exhibit varying degrees of localization. Our observations contradict previous simplified theoretical models but agree quantitatively with ab initio simulations that fully capture the 3D structural reconstruction. Here the strain redistribution and 3D buckling dominate the effective moiré potential and result in moiré flat bands at the Brillouin zone K points.

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