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Sequential order dependent dark-exciton modulation in bi-layered TMD heterostructure

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Abstract
We report the emergence of dark-excitons in transition-metal-dichalcogenide (TMD) heterostructures that strongly rely on the stacking sequence, i.e., momentum-dark K-Q exciton located exclusively at the top layer of the heterostructure. The feature stems from band renormalization and is distinct from those of typical neutral excitons or trions, regardless of materials, substrates, and even homogeneous bilayers, which is further confirmed by scanning tunneling spectroscopy. To understand the unusual stacking sequence, we introduce the excitonic Elliot formula by imposing strain exclusively on the top layer that could be a consequence of the stacking process. We further find that the intensity ratio of Q- to K-excitons in the same layer is inversely proportional to laser power, unlike for conventional K-K excitons. This can be a metric for engineering the intensity of dark K-Q excitons in TMD heterostructures, which could be useful for optical power switches in solar panels.
Issued Date
2023
Riya Sebait
Roberto Rosati
Seok Joon Yun
Krishna P. Dhakal
Samuel Brem
Chandan Biswas
Alexander Puretzky
Ermin Malic
Young Hee Lee
Type
Article
Keyword
ChalcogenidesHeterostructuresScienceSolar energySolar panelsSpectrum analysisTransition metals
DOI
10.1038/s41467-023-41047-6
URI
https://oak.ulsan.ac.kr/handle/2021.oak/16646
Publisher
NATURE COMMUNICATIONS
Language
영어
ISSN
2041-1723
Citation Volume
14
Citation Number
1
Citation Start Page
1
Citation End Page
9
Appears in Collections:
Natural Science > Physics
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