Fine Structure of Nearly Isotropic Bright Excitons in InP/ZnSe Colloidal Quantum Dots

Publication date

2019-09-19

Authors

Brodu, AnnalisaISNI 0000000506342551
Chandrasekaran, Vigneshwaran
Scarpelli, Lorenzo
Buhot, Jonathan
Masia, Francesco
Ballottin, Mariana V.
Severijnen, Marion
Tessier, Mickaël D.
Dupont, Dorian
Rabouw, FreddyISNI 0000000492491619

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Document Type

Article
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taverne

Abstract

The fine structure of exciton states in colloidal quantum dots (QDs) results from the compound effect of anisotropy and electron-hole exchange. By means of single-dot photoluminescence spectroscopy, we show that the emission of photoexcited InP/ZnSe QDs originates from radiative recombination of such fine structure exciton states. Depending on the excitation power, we identify a bright exciton doublet, a trion singlet, and a biexciton doublet line that all show pronounced polarization. Fluorescence line narrowing spectra of an ensemble of InP/ZnSe QDs in magnetic fields demonstrate that the bright exciton effectively consists of three states. The Zeeman splitting of these states is well described by an isotropic exciton model, where the fine structure is dominated by electron-hole exchange and shape anisotropy leads to only a minor splitting of the F = 1 triplet. We argue that excitons in InP-based QDs are nearly isotropic because the particular ratio of light and heavy hole masses in InP makes the exciton fine structure insensitive to shape anisotropy.

Keywords

Taverne, General Materials Science, Physical and Theoretical Chemistry

Citation

Brodu, A, Chandrasekaran, V, Scarpelli, L, Buhot, J, Masia, F, Ballottin, M V, Severijnen, M, Tessier, M D, Dupont, D, Rabouw, F T, Christianen, P C M, De Mello Donega, C, Vanmaekelbergh, D, Langbein, W & Hens, Z 2019, 'Fine Structure of Nearly Isotropic Bright Excitons in InP/ZnSe Colloidal Quantum Dots', Journal of Physical Chemistry Letters, vol. 10, no. 18, pp. 5468-5475. https://doi.org/10.1021/acs.jpclett.9b01824