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莫尔超晶格中涡旋晶格畸变阵列产生的异常光学激发。

Anomalous optical excitations from arrays of whirlpooled lattice distortions in moiré superlattices.

作者信息

Kim Jungcheol, Ko Eunjung, Jo Jaeyeon, Kim Miyoung, Yoo Hyobin, Son Young-Woo, Cheong Hyeonsik

机构信息

Department of Physics, Sogang University, Seoul, Korea.

School of Computational Sciences, Korea Institute for Advanced Study, Seoul, Korea.

出版信息

Nat Mater. 2022 Aug;21(8):890-895. doi: 10.1038/s41563-022-01240-2. Epub 2022 Apr 28.

Abstract

Moiré superlattices formed by stacking two-dimensional crystals have reinvigorated the pursuit for emergent functionalities of engineered superlattices. Unique optical characteristics can be realized from the interplay between the electronic excitations and the atomic rearrangements owing to their intrinsic softness. Although large-scale reconstructions have been identified at small twist angles, they have been treated as being rigid at large twist angles. Here, we report that moiré superlattices made from single layers of MoS and WSe exhibit a pair of torsional strains with opposite chirality irrespective of the twist angle. The whirlpool-shaped periodic lattice distortions introduce fuzziness in the Raman spectra and universal redshifts to the intralayer excitons for all twist angles. We show that both of these modulations become weaker as the twist angle increases but do not disappear, whereas they are turned off when the constituent layers are not tightly coupled, thus establishing an essential structure-property relationship for moiré superlattices.

摘要

通过堆叠二维晶体形成的莫尔超晶格重新激发了人们对工程超晶格新兴功能的追求。由于其固有的柔软性,电子激发与原子重排之间的相互作用可以实现独特的光学特性。尽管在小扭转角下已发现大规模重构,但在大扭转角下它们被视为刚性的。在此,我们报告由单层MoS和WSe制成的莫尔超晶格无论扭转角如何都表现出一对具有相反手性的扭转应变。漩涡状的周期性晶格畸变在拉曼光谱中引入模糊性,并使所有扭转角的层内激子普遍发生红移。我们表明,随着扭转角增加,这两种调制都变弱但不会消失,而当组成层没有紧密耦合时它们会关闭,从而建立了莫尔超晶格基本的结构-性质关系。

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