Electronic structure, charge modulation, and orbital polarization of LaNiO3/SrTiO3 superlattice

ORAL

Abstract

First-principles density functional theory calculations have been performed to understand the detailed electronic structure for the various (m, n) combinations of (LaNiO3)m/(SrTiO3)n superlattices. Due to the strong covalency of Ni-O bonds, the valence bands are dominated by Ni-d character and the electronic structure is mainly affected by the local environment rather than the ionic potential. Heterostructuring-induced quantum states and the interaction between them leads to the charge redistribution around the Fermi level, which may be responsible for the charge modulation and metal-insulator transition observed in the related systems.

*This work was supported by the US Department of Energy (DOE) under Contract No. DE- FG02-03ER46097

Authors

  • Myung Joon Han

    • Argonne National Lab and Northern Illinois University
  • M. van Veenendaal

    • Argonne National Lab and Northern Illinois University
    • Northern Illinois University and Argonne National Laboratory