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Phonon-driven intra-exciton Rabi oscillations in CsPbBr3 halide perovskites.

Authors :
Nguyen, Xuan Trung
Winte, Katrin
Timmer, Daniel
Rakita, Yevgeny
Ceratti, Davide Raffaele
Aharon, Sigalit
Ramzan, Muhammad Sufyan
Cocchi, Caterina
Lorke, Michael
Jahnke, Frank
Cahen, David
Lienau, Christoph
De Sio, Antonietta
Source :
Nature Communications; 2/24/2023, Vol. 14 Issue 1, p1-9, 9p
Publication Year :
2023

Abstract

Coupling electromagnetic radiation with matter, e.g., by resonant light fields in external optical cavities, is highly promising for tailoring the optoelectronic properties of functional materials on the nanoscale. Here, we demonstrate that even internal fields induced by coherent lattice motions can be used to control the transient excitonic optical response in CsPbBr<subscript>3</subscript> halide perovskite crystals. Upon resonant photoexcitation, two-dimensional electronic spectroscopy reveals an excitonic peak structure oscillating persistently with a 100-fs period for up to ~2 ps which does not match the frequency of any phonon modes of the crystals. Only at later times, beyond 2 ps, two low-frequency phonons of the lead-bromide lattice dominate the dynamics. We rationalize these findings by an unusual exciton-phonon coupling inducing off-resonant 100-fs Rabi oscillations between 1s and 2p excitons driven by the low-frequency phonons. As such, prevailing models for the electron-phonon coupling in halide perovskites are insufficient to explain these results. We propose the coupling of characteristic low-frequency phonon fields to intra-excitonic transitions in halide perovskites as the key to control the anharmonic response of these materials in order to establish new routes for enhancing their optoelectronic properties. Coupling electromagnetic radiation with matter is promising to tailor optoelectronics properties of functional materials. Here, the authors demonstrate that internal fields induced by coherent lattice motions can be used to control transient excitonic optical response in halide perovskite crystals. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
14
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
162076877
Full Text :
https://doi.org/10.1038/s41467-023-36654-2