State-resolved studies of biexcitons and surface trapping dynamics in semiconductor quantum dots

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Abstract

Biexcitons in strongly confined, colloidal CdSe quantum dots were investigated with excitonic state selectivity combined with 10 fs temporal precision. Within the first 50 fs, the first excited state of the biexciton was observed. By 100 ps, mixed character biexcitons were observed, comprised of a core exciton and a surface trapped exciton. The size dependence of the biexciton binding energies is reported for these specific biexcitons. Analysis of the spectral signatures of each biexcitonic state yields a quantitative measure of enhanced excited state trapping rates at the surface of the quantum dots. By comparing the biexcitonic signals to the state-filling signals, we show that it is primarily the holes which are trapped at the interface on the 100 ps time scale. © 2008 American Institute of Physics.

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Sewall, S. L., Cooney, R. R., Anderson, K. E. H., Dias, E. A., Sagar, D. M., & Kambhampati, P. (2008). State-resolved studies of biexcitons and surface trapping dynamics in semiconductor quantum dots. Journal of Chemical Physics, 129(8). https://doi.org/10.1063/1.2971181

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