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Abstract

We study the carrier dynamics in planar methyl ammonium lead iodide perovskite films using broadband transient absorption spectroscopy. We show that the sharp optical absorption onset is due to an exciton transition that is inhomogeneously broadened with a binding energy of 9 meV. We fully characterize the transient absorption spectrum by free-carrier-induced bleaching of the exciton transition, quasi-Fermi energy, carrier temperature and bandgap renormalization constant. The photo-induced carrier temperature is extracted from the transient absorption spectra and monitored as a function of delay time for different excitation wavelengths and photon fluences. We find an efficient hot-phonon bottleneck that slows down cooling of hot carriers by three to four orders of magnitude in time above a critical injection carrier density of ∼5 × 1017 cm-3 . Compared with molecular beam epitaxially grown GaAs, the critical density is an order of magnitude lower and the relaxation time is approximately three orders of magnitude longer.

Details

Title
Observation of a hot-phonon bottleneck in lead-iodide perovskites
Author
Yang, Ye; Ostrowski, David P; France, Ryan M; Zhu, Kai; Van De Lagemaat, Jao; Luther, Joseph M; Beard, Matthew C
Pages
53-59
Publication year
2016
Publication date
Jan 2016
Publisher
Nature Publishing Group
ISSN
17494885
e-ISSN
17494893
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1767335066
Copyright
Copyright Nature Publishing Group Jan 2016