Singlet and triplet polaron relaxation in doubly charged self-assembled quantum dots

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Abstract

Polaron relaxation in self-assembled InAs/GaAs quantum dot samples containing 2 electrons per dot is studied using far-infrared, timeresolved pump-probe measurements for transitions between the s-like ground and p-like first excited conduction band states. Spin-flip transitions between singlet and triplet states are observed experimentally in the decay of the absorption bleaching, which shows a clear biexponential dependence. The initial fast decay (∼30ps) is associated with the singlet polaron decay, while the decay component with the longer time constant (∼5 ns) corresponds to the excited state triplet lifetime. The results are explained by considering the intrinsic Dresselhaus spin-orbit interaction, which induces spin-flip transitions by acoustic phonon emission or phonon anharmonicity. We have calculated the spin-flip decay times, and good agreement is obtained between the experiment and the simulation of the pump-probe signal. Our results demonstrate the importance of spin-mixing effects for intraband energy relaxation in InAs/GaAs quantum dots. © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.

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Grange, T., Zibik, E. A., Ferreira, R., Bastard, G., Carpenter, B. A., Phillips, P. J., … Wilson, L. R. (2007). Singlet and triplet polaron relaxation in doubly charged self-assembled quantum dots. New Journal of Physics, 9. https://doi.org/10.1088/1367-2630/9/8/259

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