English

Orbital Selectivity in Hund's metals: The Iron Chalcogenides

Materials Science 2013-05-24 v1 Strongly Correlated Electrons Superconductivity

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 UU and Hund's rule coupling JJ. The evolution of the quasi particle weight ZZ as a function of the interaction terms reveals a clear crossover at UU \simeq 2.5 eV. In the weak coupling limit ZZ decreases for all correlated dd orbitals as a function of UU and beyond the crossover coupling they become weakly dependent on UU while strongly depend on JJ. A marked orbital dependence of the ZZ's emerges even if in general the orbital-selective Mott transition only occurs for relatively large values of UU. This two-stage reduction of the quasi particle coherence due to the combined effect of Hubbard UU and the Hund's JJ, suggests that the iron-based superconductors can be referred to as Hund's correlated metals.

Keywords

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