Spin Exchange in Excitons, the Quasicubic Model and Deformation Potentials in II-VI Compounds
- 15 November 1970
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 2 (10), 4005-4022
- https://doi.org/10.1103/physrevb.2.4005
Abstract
The effect of the spin-exchange interaction between electron and hole is investigated for the case of excitons originating from one of the -like valence bands and an -like conduction band, as is the case for IIb-VIb compounds. A general exciton matrix is constructed, starting from the work of Pikus. It includes spin-orbit, crystal-field, spin-exchange, and deformation-potential interactions. Use of this matrix then allows a theoretical fit to our experimental data which describes the shift of exciton levels under uniaxial pressure in ZnO, CdS, and CdSe. This fit results in the determination of six deformation potentials, two spin-orbit parameters, the crystal-field parameter, and the exchange parameter. The general theory, when adapted to the zinc-blende structure, allows us to fit our data on cubic ZnS and ZnSe, resulting in a determination of two deformation potentials and the spin-exchange parameter for each compound.
Keywords
This publication has 25 references indexed in Scilit:
- Strain-Induced Splitting and Polarization of Excitons Due to Exchange InteractionPhysical Review Letters, 1968
- Valence band symmetry and deformation potentials of ZnOSolid State Communications, 1968
- Splitting of Exciton Lines in Wurtzite-Type II-VI Crystals by Uniaxial StressPhysical Review Letters, 1968
- Influence of Uniaxial Stress on the Optical Properties of CdSePhysica Status Solidi (b), 1968
- Some Optical Properties of Group II‐VI Semiconductors (I)Physica Status Solidi (b), 1965
- Exciton lines, lattice defects and strain in single crystals of CdSeJournal of Physics and Chemistry of Solids, 1962
- Theory of the Valence Band Splittings at k=0 in Zinc-Blende and Wurtzite StructuresPhysical Review B, 1962
- Excitons and Band Splitting Produced by Uniaxial Stress in CdTeJournal of Applied Physics, 1961
- Fine structure in the optical absorption edge of anisotropic crystalsJournal of Physics and Chemistry of Solids, 1960
- Deformation Potential in Germanium from Optical Absorption Lines for Exciton FormationPhysical Review Letters, 1959