Ground and Excited Exciton Polarons in Monolayer MoSe2
arXiv:2005.05829 · doi:10.1063/5.0013092
Abstract
Monolayer transition metal dichalcogenide semiconductors, with versatile experimentally accessible exciton species, offer an interesting platform for investigating the interaction between excitons and a Fermi sea of charges. Using hexagonal boron nitride encapsulated monolayer MoSe2, we study the impact of charge density tuning on the ground and excited Rydberg states in the atomic layer. Consistent excitonpolaron behavior is revealed in both photoluminescence and reflection spectra of the A exciton 1s (A:1s) Rydberg state, in contrast to previous studies. The A:2s Rydberg state provides an opportunity to understand such interactions with greatly reduced exciton binding energy. We found that the impact of the Fermi sea becomes much more dramatic. With a photoluminescence upconversion technique, we further verify the 2s polaron-like behavior for the repulsive branch of B:2s exciton whose energy is well above the bare bandgap. Our studies show that the polaron-like interaction features are quite generic and highly robust, offering key insights into the dressed manybody state in a Fermi sea.
References in corpus (8)
- Tightly bound excitons in monolayer WSe2
- Many-Body Theory of Trion Absorption Features in Two-Dimensional Semiconductors
- Realization of an atomically thin mirror using monolayer MoSe2
- Magneto-photoluminescence of exciton Rydberg states in monolayer WSe
- Luminescent emission of excited Rydberg excitons from monolayer WSe2
- Superior valley polarization and coherence of 2s excitons in monolayer WSe2
- Trion Species-Resolved Quantum Beats in MoSe2
- Excited-State Trions in Two Dimensional Materials
Cited by in corpus (8)
- Electron-exciton interactions in the exciton-polaron problem
- Enhancement of Exciton Valley Polarization in Monolayer MoS2 Induced by Scattering
- Up- and Down-Conversion between Intra- and Inter-Valley Excitons in Waveguide Coupled Monolayer WSe2
- Excitonic theory of doping-dependent optical response in atomically thin semiconductors
- Doping-induced non-Markovian interference causes excitonic linewidth broadening in monolayer WSe
- Trion-phonon interaction in atomically thin semiconductors
- Excited Rydberg States in TMD Heterostructures
- Many-body effect in optical properties of monolayer molybdenum diselenide