arXiv · 1408.0960
Effect of the iron valence in the two types of layers in LiFeO$_2$Fe$_2$Se$_2$
Abstract
We perform electronic structure calculations for the recently synthesized iron-based superconductor LiFeO$_2$Fe$_2$Se$_2$. In contrast to other iron-based superconductors, this material comprises two different iron atoms in 3$d^5$ and 3$d^6$ configurations. In band theory, both contribute to the low-energy electronic structure. Spin-polarized density functional theory calculations predict an antiferromagnetic metallic ground state with different moments on the two Fe sites. However, several other almost degenerate magnetic configurations exist. Due to their different valences, the two iron atoms behave very differently when local quantum correlations are included through the dynamical mean-field theory. The contributions from the half-filled 3$d^5$ atoms in the LiFeO$_2$ layer are suppressed and the 3$d^6$ states from the FeSe layer restore the standard iron-based superconductor fermiology.
Explore related subjects
Keep this discovery
Christoph Heil, Lilia Boeri, Heinrich Sormann, Wolfgang von der Linden, Markus Aichhorn. 2014-08-05. Effect of the iron valence in the two types of layers in LiFeO$_2$Fe$_2$Se$_2$. https://doi.org/10.1103/physrevb.90.165122
Cite the original work for its findings. Save a collection to share your selection of sources.