Direct Observation of Electron-to-Hole Energy Transfer in CdSe Quantum Dots

Open Access
Authors
  • C. de Mello Donega
  • D. Vanmaekelbergh
  • M. Bonn
Publication date 2006
Journal Physical Review Letters
Volume | Issue number 96 | 5
Pages (from-to) 057408/1-057408/4
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract We independently determine the subpicosecond cooling rates for holes and electrons in CdSe quantum dots. Time-resolved luminescence and terahertz spectroscopy reveal that the rate of hole cooling, following photoexcitation of the quantum dots, depends critically on the electron excess energy. This constitutes the first direct, quantitative measurement of electron-to-hole energy transfer, the hypothesis behind the Auger cooling mechanism proposed in quantum dots, which is found to occur on a 1±0.15 ps time scale.

Document type Article
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