English

Comparative study of the electronic structures of Fe3O4 and Fe2SiO4

Strongly Correlated Electrons 2010-07-15 v1

Abstract

The electronic properties of two spinels Fe3_3O4_4 and Fe2_2SiO4_4 are studied by the density functional theory. The local Coulomb repulsion UU and the Hund's exchange JJ between the 3d3d electrons on iron are included. For U=0U=0, both spinels are half-metals, with the minority t2gt_{2g} states at the Fermi level. Magnetite remains a metal in a cubic phase even at large values of UU. The metal-insulator transition is induced by the X3X_3 phonon, which lowers the total energy and stabilizes the charge-orbital ordering. Fe2_2SiO4_4 transforms to a Mott insulating state for U>2U>2 eV with a gap ΔgU\Delta_g\sim U. The antiferromagnetic interactions induce the tetragonal distortion, which releases the geometrical frustration and stabilizes the long-range order. The differences of electronic structures in the high-symmetry cubic phases and the distorted low-symmetry phases of both spinels are discussed.

Keywords

Cite

@article{arxiv.1007.2340,
  title  = {Comparative study of the electronic structures of Fe3O4 and Fe2SiO4},
  author = {P. Piekarz and A. M. Oleś and K. Parlinski},
  journal= {arXiv preprint arXiv:1007.2340},
  year   = {2010}
}

Comments

6 pages, 6 figures