Energy-band structure of calcium-oxide crystals by the method of tight binding
- 15 December 1975
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 12 (12) , 5923-5930
- https://doi.org/10.1103/physrevb.12.5923
Abstract
The method of tight binding has been applied to determine the energy-band structure of the calcium-oxide crystal. The initial potential was constructed using the overlapping-atomic-potential model in terms of the charge densities of the neutral calcium and oxygen atoms. A reduced basis set was constructed using Bloch sums of contracted Gaussians. This basis set yielded accuracy equal to that obtained using Bloch sums of single Gaussians and resulted in a reduced size of the secular equation. The calculation was iterated to selfconsistency and the resulting band structure compared with experiment. The self-consistent band structure gives an energy for the -point valence-band-to-conduction-band transition of 5.93 eV which compares with the experimental value of 7.03 eV. Comparison with experiment indicates that the strong influence of the unfilled calcium electronic states upon the conduction band must be accounted for in interpreting some of the experimental data.
Keywords
This publication has 18 references indexed in Scilit:
- Band structure, cohesive energy, optical conductivity, and Compton profile of lithiumPhysical Review B, 1974
- Application of the method of tight binding for determining the excited bands of sodium and potassiumInternational Journal of Quantum Chemistry, 1974
- Energy Bands in Paramagnetic ChromiumPhysical Review B, 1973
- Energy Bands in Ferromagnetic IronPhysical Review B, 1973
- Interband Optical Conductivity of PotassiumPhysical Review Letters, 1973
- Self-Consistent Calculation of Energy Bands in Ferromagnetic NickelPhysical Review B, 1973
- Energy Band Structure of Lithium Fluoride Crystals by the Method of Tight BindingPhysical Review B, 1971
- Application of the Method of Tight Binding to the Calculation of the Energy Band Structures of Diamond, Silicon, and Sodium CrystalsPhysical Review B, 1971
- Application of the Gaussian-Type Orbitals for Calculating Energy Band Structures of Solids by the Method of Tight BindingThe Journal of Chemical Physics, 1970
- Energy Band Structure of Lithium by the Tight-Binding MethodPhysical Review B, 1966