Many-body Correlations and Exciton Complexes in CsPbBr3 Quantum Dots - Optoélectronique, Hétéroépitaxie et Matériaux Accéder directement au contenu
Article Dans Une Revue Advanced Materials Année : 2023

Many-body Correlations and Exciton Complexes in CsPbBr3 Quantum Dots

Résumé

All-inorganic lead-halide perovskite (LHP) (CsPbX , X = Cl, Br, I) quantum dots (QDs) have emerged as a competitive platform for classical light-emitting devices (in the weak light-matter interaction regime, e.g., LEDs and laser), as well as for devices exploiting strong light-matter interaction at room temperature. Many-body interactions and quantum correlations among photogenerated exciton complexes play an essential role, for example, by determining the laser threshold, the overall brightness of LEDs, and the single-photon purity in quantum light sources. Here, by combining cryogenic single-QD photoluminescence spectroscopy with configuration-interaction (CI) calculations, the size-dependent trion and biexciton binding energies are addressed. Trion binding energies increase from 7 to 17 meV for QD sizes decreasing from 30 to 9 nm, while the biexciton binding energies increase from 15 to 30 meV, respectively. CI calculations quantitatively corroborate the experimental results and suggest that the effective dielectric constant for biexcitons slightly deviates from the one of the single excitons, potentially as a result of coupling to the lattice in the multiexciton regime. The findings here provide a deep insight into the multiexciton properties in all-inorganic LHP QDs, essential for classical and quantum optoelectronic devices.
Fichier principal
Vignette du fichier
AdMater2022-2023_PoLLoC_multiexcitons_pagenumbers.pdf (943.4 Ko) Télécharger le fichier
Origine : Publication financée par une institution

Dates et versions

hal-03927520 , version 1 (15-03-2023)

Licence

Paternité

Identifiants

Citer

Chenglian Zhu, Tan Nguyen, Simon C Boehme, Anastasiia Moskalenko, Dmitry N Dirin, et al.. Many-body Correlations and Exciton Complexes in CsPbBr3 Quantum Dots. Advanced Materials, 2023, 35 (9), pp.2208354. ⟨10.1002/adma.202208354⟩. ⟨hal-03927520⟩
51 Consultations
22 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More