Optical Spectroscopy of Dark and Bright Excitons in CdSe Nanocrystals in High Magnetic Fields

Publication date

2017-10-26

Authors

Granados Del Águila, Andrés
Pettinari, G.
Groeneveld, E.ISNI 0000000394087663
De Mello Donegá, CelsoISNI 0000000390738326
Vanmaekelbergh, DanielISNI 0000000394482321
Maan, Jan C.
Christianen, Peter C. M.

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Abstract

Low-temperature polarized and time-resolved photoluminescence spectroscopy in high magnetic fields (up to 30 T) has been used to study the spin-polarization, spin-relaxation, and radiative lifetimes of excitons in wurtzite semiconductor (e.g., CdSe) colloidal nanocrystals. The applied magnetic field leads to a significant degree of circular polarization of the exciton photoluminescence, accompanied by a reduction in the photoluminescence decay time. The circular polarization arises from the Zeeman splitting of exciton levels, whereas lifetime reduction results from a polarization-preserving field-induced mixing of exciton levels. We analyze these experimental findings in terms of a simple model that combines both Zeeman effect and exciton-level mixing, as a function of the relative orientation of the nanocrystal c-axis and the magnetic field. This model is able to simultaneously describe the degree of circular polarization and lifetime reduction of the exciton photoluminescence, permitting us to quantify ...

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Citation

Granados Del Águila, A, Pettinari, G, Groeneveld, E, De Mello Donegá, C, Vanmaekelbergh, D, Maan, J C & Christianen, P C M 2017, 'Optical Spectroscopy of Dark and Bright Excitons in CdSe Nanocrystals in High Magnetic Fields', Journal of Physical Chemistry C, vol. 121, no. 42, pp. 23693-23704. https://doi.org/10.1021/acs.jpcc.7b06170