English

ARPES view of orbitally resolved quasiparticle lifetimes in iron pnictides

Strongly Correlated Electrons 2016-03-23 v1

Abstract

We study with ARPES the renormalization and quasiparticle lifetimes of the dxyd_{xy} and dxzd_{xz}/dyzd_{yz} orbitals in two iron pnictides, LiFeAs and Ba(Fe0.92_{0.92}Co0.08_{0.08})2_2As2_2 (Co8). We find that both quantities depend on orbital character rather than on the position on the Fermi Surface (for example hole or electron pocket). In LiFeAs, the renormalizations are larger for dxyd_{xy}, while they are similar on both types of orbitals in Co8. The most salient feature, which proved robust against all the ARPES caveats we could think of, is that the lifetimes for dxyd_{xy} exhibit a markedly different behavior than those for dxzd_{xz}/dyzd_{yz}. They have smaller values near EFE_F and exhibit larger ω\omega and temperature dependences. While the behavior of dxyd_{xy} is compatible with a Fermi liquid description, it is not the case for dxzd_{xz}/dyzd_{yz}. This situation should have important consequences for the physics of iron pnictides, which have not been considered up to now. More generally, it raises interesting questions on how a Fermi liquid regime can be established in a multiband system with small effective bandwidths.

Keywords

Cite

@article{arxiv.1602.07986,
  title  = {ARPES view of orbitally resolved quasiparticle lifetimes in iron pnictides},
  author = {Veronique Brouet and David LeBoeuf and Ping-Hui Lin and Joseph Mansart and Amina Taleb-Ibrahimi and Patrick Le Fevre and Francois Bertran and Anne Forget and Dorothee Colson},
  journal= {arXiv preprint arXiv:1602.07986},
  year   = {2016}
}