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An <i>ab initio</i> Study of Oxygen Vacancies in Ba<sub>2</sub>CuO<sub>4-δ</sub>

ORAL

Abstract

Oxygen vacancies have been shown to play a key role in the emergence of superconductivity in the recently discovered superconductor Ba2CuO4-δ. Interestingly, the amount of holes contributed by these vacancies is found to lie outside the typical superconducting dome of other cuprates. There is also considerable debate as to whether the vacancies reside in the CuO2 plane or at the apical sites and what spatial configuration they occupy. Using state-of-the-art ab initio techniques, we systematically examine the energy landscape and electronic structure of oxygen vacancies in Ba2CuO4-δ. A number of different configurations involving single and multiple vacancies in apical and planar positions are considered. Planar vacancies are found to yield lower energies and display exotic band structures. Finally, we will briefly connect our results to recent experiments.

Presenters

  • Matthew Matzelle

    Department of Physics, Northeastern University, Northeastern University

Authors

  • Matthew Matzelle

    Department of Physics, Northeastern University, Northeastern University

  • Christopher Lane

    Los Alamos National Laboratory, Theoretical Division (T-4) / CINT, Los Alamos National Laboratory

  • Ruihua He

    Westlake University

  • Robert Markiewicz

    Northeastern University, NU, Northeastern U

  • Arun Bansil

    Department of Physics, Northeastern University, Northeastern University, NU, Department of Physics, Northeastern University, USA