arXiv · 2007.11962
Moir\'e induced electronic structure modifications in monolayer V$_{2}$S$_{3}$ on Au(111)
Abstract
There is immense interest in how the local environment influences the electronic structure of materials at the single layer limit. We characterize moir\'e induced spatial variations in the electronic structure of in-situ grown monolayer V2S3 on Au(111) by means of low temperature scanning tunneling microscopy and spectroscopy. We observe a long-range modulation of the integrated local density of states (LDOS), and quantify this modulation with respect to the moir\'e superstructure for multiple orientations of the monolayer with respect to the substrate. Scanning tunneling spectroscopy reveals a prominent peak in the LDOS, which is shifted in energy at different points of the moir\'e superstructure. Comparing ab initio calculations with angle-resolved photoemission, we are able to attribute this peak to bands that exhibit a large out-of-plane d-orbital character. This suggests that the moir\'e driven variations in the measured density of states is driven by a periodic modulation of the monolayer-substrate hybridization.
Explore related subjects
Keep this discovery
Umut Kamber, Sahar Pakdel, Raluca-Maria Stan, Anand Kamlapure, Brian Kiraly, Fabian Arnold, Andreas Eich, Arlette S. Ngankeu, Marco Bianchi, Jill A. Miwa, Charlotte E. Sanders, Nicola Lanatà, Philip Hofmann, Alexander A. Khajetoorians. 2020-07-23. Moir\'e induced electronic structure modifications in monolayer V$_{2}$S$_{3}$ on Au(111). https://doi.org/10.1103/physrevb.103.115414
Cite the original work for its findings. Save a collection to share your selection of sources.