Phonon coherences reveal the polaronic character of excitons in two-dimensional lead halide perovskites
- PMID: 30643234
- DOI: 10.1038/s41563-018-0262-7
Phonon coherences reveal the polaronic character of excitons in two-dimensional lead halide perovskites
Erratum in
-
Author Correction: Phonon coherences reveal the polaronic character of excitons in two-dimensional lead halide perovskites.Nat Mater. 2019 Apr;18(4):406. doi: 10.1038/s41563-019-0316-5. Nat Mater. 2019. PMID: 30765889
Abstract
Hybrid organic-inorganic semiconductors feature complex lattice dynamics due to the ionic character of the crystal and the softness arising from non-covalent bonds between molecular moieties and the inorganic network. Here we establish that such dynamic structural complexity in a prototypical two-dimensional lead iodide perovskite gives rise to the coexistence of diverse excitonic resonances, each with a distinct degree of polaronic character. By means of high-resolution resonant impulsive stimulated Raman spectroscopy, we identify vibrational wavepacket dynamics that evolve along different configurational coordinates for distinct excitons and photocarriers. Employing density functional theory calculations, we assign the observed coherent vibrational modes to various low-frequency (≲50 cm-1) optical phonons involving motion in the lead iodide layers. We thus conclude that different excitons induce specific lattice reorganizations, which are signatures of polaronic binding. This insight into the energetic/configurational landscape involving globally neutral primary photoexcitations may be relevant to a broader class of emerging hybrid semiconductor materials.
Comment in
-
Shaky lattices for light-matter interactions.Nat Mater. 2019 Apr;18(4):307-308. doi: 10.1038/s41563-019-0299-2. Nat Mater. 2019. PMID: 30894754 No abstract available.
Publication types
LinkOut - more resources
Full Text Sources