Observation of Rydberg excitons in monolayer MoS2 at room temperature by Imbert-Fedorov shift spectroscopy

Fuente: arXiv
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Autores principales: Li, Xiaofeng, Tu, Jiaxing, Du, Zhanyunxin, Zha, Mingjie, Li, Xiao, Liu, Zhibo
Formato: Preprint
Publicado: 2024
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author Li, Xiaofeng
Tu, Jiaxing
Du, Zhanyunxin
Zha, Mingjie
Li, Xiao
Liu, Zhibo
author_facet Li, Xiaofeng
Tu, Jiaxing
Du, Zhanyunxin
Zha, Mingjie
Li, Xiao
Liu, Zhibo
contents Rydberg excitons in transition metal dichalcogenides (TMDs) have emerged as a promising platform for investigating the properties of open quantum systems, thanks to their large binding energies(hundreds of meV). However, the study of Rydberg excitons in TMDs has been hindered by sample quality limitations, strong background signals from ground excitons, and broadening at room temperature. In this work, we report the first observation of multiple Rydberg exciton states in monolayer MoS2 at room temperature using Imbert-Fedorov (IF) shift spectroscopy. By numerically solving the Schrodinger equation, we extracted the quasiparticle band gaps for A and B excitons, confirming the temperature-induced redshift of the band gap, in excellent agreement with previous results. Our findings establish IF shift spectroscopy as a powerful tool for characterizing Rydberg excitons in TMDs, paving the way for potential applications in quantum manipulation and control.
format Preprint
id arxiv_https___arxiv_org_abs_2410_05976
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Observation of Rydberg excitons in monolayer MoS2 at room temperature by Imbert-Fedorov shift spectroscopy
Li, Xiaofeng
Tu, Jiaxing
Du, Zhanyunxin
Zha, Mingjie
Li, Xiao
Liu, Zhibo
Optics
Mesoscale and Nanoscale Physics
Rydberg excitons in transition metal dichalcogenides (TMDs) have emerged as a promising platform for investigating the properties of open quantum systems, thanks to their large binding energies(hundreds of meV). However, the study of Rydberg excitons in TMDs has been hindered by sample quality limitations, strong background signals from ground excitons, and broadening at room temperature. In this work, we report the first observation of multiple Rydberg exciton states in monolayer MoS2 at room temperature using Imbert-Fedorov (IF) shift spectroscopy. By numerically solving the Schrodinger equation, we extracted the quasiparticle band gaps for A and B excitons, confirming the temperature-induced redshift of the band gap, in excellent agreement with previous results. Our findings establish IF shift spectroscopy as a powerful tool for characterizing Rydberg excitons in TMDs, paving the way for potential applications in quantum manipulation and control.
title Observation of Rydberg excitons in monolayer MoS2 at room temperature by Imbert-Fedorov shift spectroscopy
topic Optics
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2410.05976