Exciton energies in shallow quantum wells and spin superlattices
- 15 December 1993
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 48 (23) , 17321-17330
- https://doi.org/10.1103/physrevb.48.17321
Abstract
We describe a general method of calculating exciton energies in shallow quantum wells. This technique is applicable to both single- and multiple-quantum-well systems, and is valid for both type-I and type-II systems, even under circumstances where the valence- and/or conduction-band offsets may be small compared to the exciton binding energy. Quantitative predictions of excitonic energies and relative intensities are made and compared with experimental data on a number of different shallow-well diluted magnetic semiconductor quantum well and superlattice systems. Based on these comparisons, it is shown that the model indeed provides a detailed description and analysis of the type-I–type-II transition and the behavior of excitons in a spin superlattice. In addition, the model also predicts and describes certain additional phenomena, such as metastable ‘‘above-gap’’ excitons which should exist in certain type-II systems. Also, reentrant type-I–type-II–type-I transitions are predicted under some circumstances.Keywords
This publication has 21 references indexed in Scilit:
- Exciton transfer in quantum well structuresSuperlattices and Microstructures, 1992
- Spin tuning in magnetically coupled double quantum wellsPhysical Review B, 1992
- Spin superlattice formation in ZnSe/Se multilayersPhysical Review Letters, 1991
- Spin superlattice behavior in ZnSe/Se quantum wellsPhysical Review Letters, 1991
- Magnetic-field-induced type-I→type-II transition in a semimagnetic CdTe/Te superlatticePhysical Review B, 1990
- Femtosecond spin-polarization spectroscopy in diluted-magnetic-semiconductor quantum wellsPhysical Review Letters, 1990
- Spin-dependent type-I, type-II behavior in a quantum well systemPhysical Review Letters, 1989
- Dimensional-crossover studies of magnetic susceptibility in diluted-magnetic-semiconductor superlatticesPhysical Review Letters, 1987
- Time-resolved exciton recombination in CdTe/Cd1−xMnxTe multiple quantum wellsApplied Physics Letters, 1985
- Spin Superlattice with Tunable MinigapPhysical Review Letters, 1982