Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1812223 | Physica B: Condensed Matter | 2010 | 5 Pages |
Abstract
Quantum-chemical modelling based on the Hartree-Fock methodology and a periodic supercell model is done to study oxygen vacancy and F-type centres in the perovskite-type MgSiO3 crystal. The equilibrium geometry of defects is obtained, confirming the importance of electrostatic interaction in determination of atomic shifts. The calculated relaxation energies due to the defect formation are between 8 and 10Â eV, thus evidencing favourability in the occurrence of such defects. The wave functions describing both F+ and F centres are rather diffuse and the point defects are not well localised within the oxygen vacancy region. The ÎÂ SCF computed absorption energies due to the F-type centres fall well within the ultraviolet spectrum, between 136 and 254Â nm for the F+ centre and between 163 and 248Â nm for the F centre.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Condensed Matter Physics
Authors
Arvids Stashans, Lorena Piedra, Tamara Briceño,