Using the unrestricted Hartree-Fock method and supercells containing up to 160 atoms, we calculated the energy level positions in the gap and atomic geometry for the Fe4+ impurity substituting for a host Ti atom in SrTiO3. In agreement with experiment, the high-spin (S = 2) state is much lower in energy than the zero-spin state. The energy level positions strongly depend on the asymmetric displacement mode of the six nearest O ions which is a combination of the Jahn-Teller and breathing modes. A considerable covalent bonding between the Fe ion and the four nearest O ions takes place.

Original languageEnglish
Pages (from-to)14-20
Number of pages7
JournalComputational Materials Science
Volume24
Issue number1-2
DOIs
StatePublished - May 2002

    Research areas

  • Ab initio calculations, Atomic and electronic structure, Hartree-Fock method, Oxides, Perovskites, Transition metals

    Scopus subject areas

  • Computer Science(all)
  • Chemistry(all)
  • Materials Science(all)
  • Mechanics of Materials
  • Physics and Astronomy(all)
  • Computational Mathematics

ID: 84355788