English

Coherence effect in a two-band superconductor: Application to iron pnictides

Superconductivity 2010-06-28 v2

Abstract

From a theoretical point of view, we propose an experimental method to determine the pairing symmetry of iron pnictides. We focus on two kinds of pairing symmetries, s+s_{+-} and s++s_{++}, which are strong candidates for the pairing symmetry of iron pnictides. For each of these two symmetries, we calculate both the density and spin response functions by using the two-band BCS model within the one-loop approximation. As a result, a clear difference is found between the s+s_{+-}- and s++s_{++}-wave states in the temperature dependence of the response functions at nesting vector Q\bf{Q}, which connects the hole and electron Fermi surfaces. We point out that this difference comes from the coherence effect in the two-band superconductor. We suggest that the pairing symmetry could be clarified by observing the temperature dependence of both the density and spin structure factors at the nesting vector Q\bf{Q} in neutron scattering measurements.

Keywords

Cite

@article{arxiv.0911.0528,
  title  = {Coherence effect in a two-band superconductor: Application to iron pnictides},
  author = {Keisuke Masuda and Susumu Kurihara},
  journal= {arXiv preprint arXiv:0911.0528},
  year   = {2010}
}

Comments

15 pages, 7 figures, 1 table