Orbital Selectivity in Hund's metals: The Iron Chalcogenides
Abstract
We show that electron correlations lead to a bad metallic state in chalcogenides FeSe and FeTe despite the intermediate value of the Hubbard repulsion and Hund's rule coupling . The evolution of the quasi particle weight as a function of the interaction terms reveals a clear crossover at 2.5 eV. In the weak coupling limit decreases for all correlated orbitals as a function of and beyond the crossover coupling they become weakly dependent on while strongly depend on . A marked orbital dependence of the 's emerges even if in general the orbital-selective Mott transition only occurs for relatively large values of . This two-stage reduction of the quasi particle coherence due to the combined effect of Hubbard and the Hund's , suggests that the iron-based superconductors can be referred to as Hund's correlated metals.
Cite
@article{arxiv.1211.2015,
title = {Orbital Selectivity in Hund's metals: The Iron Chalcogenides},
author = {N. Lanatà and H. U. R. Strand and G. Giovannetti and B. Hellsing and L. de' Medici and M. Capone},
journal= {arXiv preprint arXiv:1211.2015},
year = {2013}
}
Comments
5 pages, 4 figures