English

Magnetic states of iron-based superconducting compounds calculated by using GGA$+U$ method with negative \emph{U}

Strongly Correlated Electrons 2014-07-22 v1 Materials Science

Abstract

The magnetic moments per Fe atom in high-TcT{_\textrm{c}} iron-based superconducting compounds, BaFe2_{2}As2_{2} and LaFeAsO obtained from the first-principles calculation with local-spin-density approximation are much larger than those obtained from experiments. To resolve the contradictory results between theory and experiment we employed the so-called LDA+U+ U (or more exactly GGA+U+ U) technique with negative \emph{U} in the first-principles calculation. The calculated values with negative \emph{U}, 0.09- 0.09 Ry and 0.10- 0.10 Ry for BaFe2_{2}As2_{2} and LaFeAsO, respectively, are in excellent agreement with the experimental ones. By comparing the differences in \emph{d}-orbital occupation numbers and spin densities calculated by using a simple GGA and GGA+U+ U with negative UU, the magnetic moments of the two compounds are found to be similar to the case of low-spin state of metamagnetic Fe3_{3}Al alloy.

Keywords

Cite

@article{arxiv.1407.5137,
  title  = {Magnetic states of iron-based superconducting compounds calculated by using GGA$+U$ method with negative \emph{U}},
  author = {Jae Kyung Jang and Joo Yull Rhee},
  journal= {arXiv preprint arXiv:1407.5137},
  year   = {2014}
}