Multiexcitons in type-II colloidal semiconductor quantum dots
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- 22 January 2007
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 75 (3), 035330
- https://doi.org/10.1103/physrevb.75.035330
Abstract
The spectroscopy and dynamics of multiple excitations on colloidal type-II core-shell quantum dots (QDs) are explored via quasi-cw multiexciton spectroscopy. The charge separation induced by the band offset redshifts the exciton emission and increases the radiative lifetime. In addition, we observe a significant modification of multiexciton properties compared with core-only or type-I QDs. In particular, the Auger recombination lifetimes are significantly increased, up to a nanosecond time scale. While in type-I QDs the Auger lifetime scales with the volume, we find for type-II QDs a scaling law that introduces a linear dependence also on the radiative lifetime. We observe a blueshift of the biexciton emission and extract biexciton repulsion of up to in type-II QDs. This is assigned to the dominance of the Coulomb repulsion as the positive and negative charges become spatially separated, which overwhelms the correlation binding term. Higher electronic excited states can remain type I even when the lowest transition is already type II, resulting in a different size dependence of the triexciton emission. Finally, we discuss the possibilities of “multiexciton band gap engineering” using colloidal type-II QDs.
Keywords
This publication has 35 references indexed in Scilit:
- High Efficiency Carrier Multiplication in PbSe Nanocrystals: Implications for Solar Energy ConversionPhysical Review Letters, 2004
- Trion, biexciton, and exciton dynamics in single self-assembled CdSe quantum dotsPhysical Review B, 2003
- Light amplification in semiconductor nanocrystals: Quantum rods versus quantum dotsApplied Physics Letters, 2003
- Lasing from Semiconductor Quantum Rods in a Cylindrical MicrocavityAdvanced Materials, 2002
- Optical Gain and Stimulated Emission in Nanocrystal Quantum DotsScience, 2000
- Quantization of Multiparticle Auger Rates in Semiconductor Quantum DotsScience, 2000
- Multiexciton Spectroscopy of a Single Self-Assembled Quantum DotPhysical Review Letters, 1998
- Type-II quantum-well lasers for the mid-wavelength infraredApplied Physics Letters, 1995
- Biexciton effects in femtosecond nonlinear transmission of semiconductor quantum dotsPhysical Review B, 1994
- Absorption and intensity-dependent photoluminescence measurements on CdSe quantum dots: assignment of the first electronic transitionsJournal of the Optical Society of America B, 1993