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Quasiparticle band structure for SrTiO3 and BaTiO3: A combined G0W0 and LDA+U approach

ORAL

Abstract

We present the quasiparticle band structures of SrTiO3 and BaTiO3, two seemingly simple oxides. Previous G0W0 calculations predicted a band gap around 3.36 to 3.82 eV for SrTiO3 compared to the experimental value of 3.25 eV. A similar discrepancy between theory and experiment for BaTiO3 is observed. We show that the fully-converged G0W0 approach predicts reasonably accurate band gap values for both materials, provided that the calculations are carried out on top of LDA+U solutions. These results emphasize the deficiency of the LDA in describing the localized 3d states, in particular as a mean-field starting point for subsequent many-body perturbation calculations. This work demonstrates the accuracy and applicability of the combined G0W0 and LDA+U approach in calculating the quasiparticle band structures for materials involving localized 3d states, not only for systems with fully occupied 3d semicore states but also for 3d states which are unoccupied.

Presenters

  • Gabe Lopez-Candales

    Physics, University at Buffalo, State Univ of NY - Buffalo

Authors

  • Gabe Lopez-Candales

    Physics, University at Buffalo, State Univ of NY - Buffalo

  • Zhao Tang

    Physics, University at Buffalo, State Univ of NY - Buffalo

  • Weiyi Xia

    Department of Physics, State Univ of NY - Buffalo, Physics, University at Buffalo

  • Peihong Zhang

    Department of Physics, State Univ of NY - Buffalo, Physics, University at Buffalo, State Univ of NY - Buffalo