English

Intermediate-spin state and properties of LaCoO_3

Strongly Correlated Electrons 2008-02-03 v1

Abstract

The electronic structure of the perovskite LaCoO3_3 for different spin states of Co ions was calculated in the LDA+U approach. The ground state was found to be a nonmagnetic insulator with Co ions in a low-spin state. Somewhat higher in energy we found two intermediate-spin states followed by a high-spin state at significantly higher energy. The calculation results show that Co 3dd states of t2gt_{2g} symmetry form narrow bands which could easily localize whilst ege_g orbitals, due to their strong hybridization with the oxygen 2pp states, form a broad σ\sigma^* band. With the increase of temperature which is simulated by the corresponding increase of the lattice parameter, the transition from the low- to intermediate-spin states occurs. This intermediate-spin (occupation t2g5eg1t_{2g}^5e_g^1) can develop an orbital ordering which can account for the nonmetallic nature of LaCoO3_3 at 90 K<<T<<500 K. Possible explanations of the magnetic behavior and gradual insulating-metal transition are suggested.

Keywords

Cite

@article{arxiv.cond-mat/9709060,
  title  = {Intermediate-spin state and properties of LaCoO_3},
  author = {M. A. Korotin and S. Yu. Ezhov and I. V. Solovyev and V. I. Anisimov and D. I. Khomskii and G. A. Sawatzky},
  journal= {arXiv preprint arXiv:cond-mat/9709060},
  year   = {2008}
}

Comments

formatted using LaTeX2e, graphicx and geometry packages