English

Mott physics in $2p$ electron dioxygenyl magnet : O$_{2}$$M$F$_{6}$ ($M$=Sb, Pt)

Strongly Correlated Electrons 2011-08-25 v1

Abstract

We have investigated electronic structures and magnetic properties of O2_{2}MMF6_{6} (MM=Sb, Pt), which are composed of two building blocks of strongly correlated electrons: O2+_{2}^{+} dioxygenyls and MMF6_{6}^{-} octahedra, by employing the first-principles electronic structure band method. For O2_{2}SbF6_{6}, as a reference system of O2_{2}PtF6_{6}, we have shown that the Coulomb correlation of O(2pp) electrons drives the Mott insulating state. For O2_{2}PtF6_{6}, we have demonstrated that the Mott insulating state is induced by the combined effects of the Coulomb correlation of O(2pp) and Pt(5dd) electrons and the spin-orbit (SO) interaction of Pt(5dd) states. The role of the SO interaction in forming the Mott insulating state of O2_{2}PtF6_{6} is similar to the case of Sr2_{2}IrO4_{4} that is a prototype of a SO induced Mott system with Jeff=1/2_{eff}=1/2.

Keywords

Cite

@article{arxiv.1103.0129,
  title  = {Mott physics in $2p$ electron dioxygenyl magnet : O$_{2}$$M$F$_{6}$ ($M$=Sb, Pt)},
  author = {Minjae Kim and B. I. Min},
  journal= {arXiv preprint arXiv:1103.0129},
  year   = {2011}
}

Comments

5 pages, 6 figures