| Literature DB >> 26705821 |
Nils Lenngren1, Tommy Garting1, Kaibo Zheng1, Mohamed Abdellah1,2, Noëlle Lascoux1, Fei Ma1, Arkady Yartsev1, Karel Žídek1, Tõnu Pullerits1.
Abstract
Multiexciton absorption cross sections are important for analysis of a number of experiments, including multiple exciton generation and stimulated emisson. We present a rigorous method to determine these cross sections using transient absorption (TA) measurements. We apply the method to CdSe quantum dots (QDs) and core-shell (CdSe)ZnS QDs. The method involves measuring TA dynamics for various excitation intensities over a broad time range and analyzing the experiments in terms of a kinetic multiexciton model taking into account all contributions to the signal. In this way, we were able to quantify exciton and multiexciton absorption cross sections at different spectral positions. The absorption cross sections decrease with increasing number of excitations, qualitatively in agreement with the state-filling effective mass model but showing a slower decrease. The cross sections for single-exciton to biexciton absorption range between 57 and 99% of the ground to single-exciton cross section.Entities:
Keywords: CdSe; absorption cross sections; femtosecond spectroscopy; multiexciton; quantum dots; transient absorption
Year: 2013 PMID: 26705821 DOI: 10.1021/jz401522h
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475