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  5. Controlled coherent-coupling and dynamics of exciton complexes in a MoSe$_2$ monolayer

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Preprint
en
2023

Controlled coherent-coupling and dynamics of exciton complexes in a MoSe$_2$ monolayer

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0 Files

en
2023
DOI: 10.48550/arxiv.2302.13109arxiv.org/abs/2302.13109

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Kenji Watanabe
Kenji Watanabe

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Aleksander Rodek
Thilo Hahn
James Howarth
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Abstract

Quantifying and controlling the coherent dynamics and couplings of optically active excitations in solids is of paramount importance in fundamental research in condensed matter optics and for their prospective optoelectronic applications in quantum technologies. Here, we perform ultrafast coherent nonlinear spectroscopy of a charge-tunable MoSe$_2$ monolayer. The experiments show that the homogeneous and inhomogeneous line width and the population decay of exciton complexes hosted by this material can be directly tuned by an applied gate bias, which governs the Fermi level and therefore the free carrier density. By performing two-dimensional spectroscopy, we also show that the same bias-tuning approach permits us to control the coherent coupling strength between charged and neutral exciton complexes.

How to cite this publication

Aleksander Rodek, Thilo Hahn, James Howarth, Takashi Taniguchi, Kenji Watanabe, M. Potemski, P. Kossacki, Daniel Wigger, Jacek Kasprzak (2023). Controlled coherent-coupling and dynamics of exciton complexes in a MoSe$_2$ monolayer. , DOI: https://doi.org/10.48550/arxiv.2302.13109.

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Publication Details

Type

Preprint

Year

2023

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.48550/arxiv.2302.13109

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