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Defect Structure of Localized Excitons in a WSe_ 2 Monolayer.

Author
Abstract
:

The atomic and electronic structure of intrinsic defects in a WSe_{2} monolayer grown on graphite was revealed by low temperature scanning tunneling microscopy and spectroscopy. Instead of chalcogen vacancies that prevail in other transition metal dichalcogenide materials, intrinsic defects in WSe_{2} arise surprisingly from single tungsten vacancies, leading to the hole (p-type) doping. Furthermore, we found these defects to dominate the excitonic emission of the WSe_{2} monolayer at low temperature. Our work provided the first atomic-scale understanding of defect excitons and paved the way toward deciphering the defect structure of single quantum emitters previously discovered in the WSe_{2} monolayer.

Year of Publication
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2017
Journal
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Physical review letters
Volume
:
119
Issue
:
4
Number of Pages
:
046101
Date Published
:
2017
ISSN Number
:
0031-9007
URL
:
http://link.aps.org/abstract/PRL/v119/p046101
DOI
:
10.1103/PhysRevLett.119.046101
Short Title
:
Phys Rev Lett
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