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由 MoS-WSe 异质双层的莫尔图案产生的量子限制电子态。

Quantum-Confined Electronic States Arising from the Moiré Pattern of MoS-WSe Heterobilayers.

机构信息

Paul-Drude-Institut für Festkörperelektronik , Hausvogteiplatz 5-7 , 10117 Berlin , Germany.

Center for Spintronics and Quantum Systems, State Key Laboratory for Mechanical Behavior of Materials , Xi'an Jiaotong University , Xi'an 710049 , China.

出版信息

Nano Lett. 2018 Mar 14;18(3):1849-1855. doi: 10.1021/acs.nanolett.7b05125. Epub 2018 Feb 9.

Abstract

A two-dimensional (2D) heterobilayer system consisting of MoS on WSe, deposited on epitaxial graphene, is studied by scanning tunneling microscopy and spectroscopy at temperatures of 5 and 80 K. A moiré pattern is observed, arising from lattice mismatch of 3.7% between the MoS and WSe. Significant energy shifts are observed in tunneling spectra observed at the maxima of the moiré corrugation, as compared with spectra obtained at corrugation minima, consistent with prior work. Furthermore, at the minima of the moiré corrugation, sharp peaks in the spectra at energies near the band edges are observed for spectra acquired at 5 K. The peaks correspond to discrete states that are confined within the moiré unit cells. Conductance mapping is employed to reveal the detailed structure of the wave functions of the states. For measurements at 80 K, the sharp peaks in the spectra are absent, and conductance maps of the band edges reveal little structure.

摘要

一个由 MoS 层和 WSe 层组成的二维(2D)异质双层系统,沉积在外延石墨烯上,在 5 和 80 K 的温度下通过扫描隧道显微镜和光谱进行研究。观察到了由 MoS 和 WSe 之间 3.7%的晶格失配引起的莫尔图案。与在波纹最小值处获得的光谱相比,在莫尔波纹最大值处观察到的隧道光谱中观察到了显著的能量位移,这与之前的工作一致。此外,在莫尔波纹的最小值处,对于在 5 K 获得的光谱,在接近能带边缘的能量处的光谱中观察到尖锐的峰。这些峰对应于被限制在莫尔单元中的离散态。电导映射被用来揭示态的波函数的详细结构。对于在 80 K 的测量,光谱中的尖锐峰不存在,并且能带边缘的电导图显示出很少的结构。

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