Photoluminescence Stokes shift and exciton fine structure in CdTe nanocrystals
- 24 August 2001
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 64 (11) , 113303
- https://doi.org/10.1103/physrevb.64.113303
Abstract
The photoluminescence spectra of spherical CdTe nanocrystals with zincblende structure are studied by size-selective spectroscopic techniques. We observe a resonant Stokes shift of 15 meV when the excitation laser energy is tuned to the red side of the absorption band at 2.236 eV. The experimental data are analyzed within a symmetry-based tight-binding theory of the exciton spectrum, which is first shown to account for the size dependence of the fundamental gap reported previously in the literature. The theoretical Stokes shift presented as a function of the gap shows a good agreement with the experimental data, indicating that the measured Stokes shift indeed arises from the electron-hole-exchange interaction.Keywords
All Related Versions
This publication has 16 references indexed in Scilit:
- Exciton states and optical properties of CdSe nanocrystalsPhysical Review B, 2001
- Luminescence Properties of Thiol-Stabilized CdTe NanocrystalsThe Journal of Physical Chemistry B, 1999
- Many-body pseudopotential theory of excitons in InP and CdSe quantum dotsPhysical Review B, 1999
- Exciton fine structure in CdSe nanoclustersPhysical Review B, 1998
- Interplay of Coulomb, exchange, and spin-orbit effects in semiconductor nanocrystallitesPhysical Review B, 1998
- Size-dependent energy levels of CdTe quantum dotsPhysical Review B, 1997
- Size Quantization in Electrodeposited CdTe Nanocrystalline FilmsThe Journal of Physical Chemistry B, 1997
- Effects of finite spin-orbit splitting on optical properties of spherical semiconductor quantum dotsPhysical Review B, 1996
- Enhancement of electron-hole exchange interaction in CdSe nanocrystals: A quantum confinement effectPhysical Review B, 1996
- Synthesis and characterization of surface-modified colloidal cadmium telluride quantum dotsThe Journal of Physical Chemistry, 1993