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Monte Carlo modeling of local structure in Ba<sub>1-x</sub>K<sub>x</sub>BiO<sub>3</sub>

ORAL

Abstract

Ba1-xKxBiO3 exhibits a plethora of remarkable phenomena, such as charge-density wave (CDW) order,  a metal-insulator transition, and high-temperature superconductivity. While the average structural symmetry of this perovskite has been documented in detail, crucial questions pertaining to local structural symmetry and short-range order remain unanswered. Here we present a semi-phenomenological Monte Carlo study of several models of the local structure of Ba1-xKxBiO3 near the metal-insulator transition. The models are based on various hypotheses about the underlying physics and chemistry and informed by diffuse x-ray scattering data. In this way, we provide a framework to qualitatively test various hypotheses and for interpretation of these data. This allows us to answer some of the long-standing questions regarding remnant short-range CDW order, the interplay of frustrated tilts and polar distortions, and the possibility of local symmetry breaking in Ba1-xKxBiO3 .

Presenters

  • Marin Spaić

    Univ of Zagreb

Authors

  • Marin Spaić

    Univ of Zagreb

  • Sylvia L Griffitt

    University of Minnesota

  • Dayu Zhai

    University of Minnesota

  • Zachary W Anderson

    University of Minnesota, School of Physics and Astronomy, University of Minnesota

  • Damjan Pelc

    Univ of Zagreb, School of Physics and Astronomy, University of Minnesota

  • Matthew J Krogstad

    Argonne National Laboratory, Materials Science Division, Argonne National Laboratory

  • Raymond Osborn

    Argonne National Laboratory, Materials Science Division, Argonne National Laboratory

  • Martin Greven

    University of Minnesota, School of Physics and Astronomy, University of Minnesota