English

Microscopic origin of Heisenberg and non-Heisenberg exchange interactions in ferromagnetic bcc Fe

Materials Science 2016-06-01 v1 Strongly Correlated Electrons

Abstract

By means of first principles calculations we investigate the nature of exchange coupling in ferromagnetic bcc Fe on a microscopic level. Analyzing the basic electronic structure reveals a drastic difference between the 3d3d orbitals of EgE_g and T2gT_{2g} symmetries. The latter ones define the shape of the Fermi surface, while the former ones form weakly-interacting impurity levels. We demonstrate that, as a result of this, in Fe the T2gT_{2g} orbitals participate in exchange interactions, which are only weakly dependent on the configuration of the spin moments and thus can be classified as Heisenberg-like. These couplings are shown to be driven by Fermi surface nesting. In contrast, for the EgE_g states the Heisenberg picture breaks down, since the corresponding contribution to the exchange interactions is shown to strongly depend on the reference state they are extracted from. Our analysis of the nearest-neighbour coupling indicates that the interactions among EgE_g states are mainly proportional to the corresponding hopping integral and thus can be attributed to be of double-exchange origin.

Keywords

Cite

@article{arxiv.1510.01872,
  title  = {Microscopic origin of Heisenberg and non-Heisenberg exchange interactions in ferromagnetic bcc Fe},
  author = {Y. O. Kvashnin and R. Cardias and A. Szilva and I. Di Marco and M. I. Katsnelson and A. I. Lichtenstein and L. Nordström and A. B. Klautau and O. Eriksson},
  journal= {arXiv preprint arXiv:1510.01872},
  year   = {2016}
}

Comments

5 pages, 4 figures