4.6 Article

Functional renormalization-group study of the doping dependence of pairing symmetry in the iron pnictide superconductors

期刊

PHYSICAL REVIEW B
卷 80, 期 18, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.80.180505

关键词

band structure; doping; d-wave superconductivity; Fermi surface; high-temperature superconductors; iron compounds; phase diagrams; renormalisation; superconducting energy gap

资金

  1. DFG [DFG-FOR538, FOR723]
  2. Alfred P. Sloan Foundation

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We use the functional renormalization group to analyze the phase diagram of a four-band model for the iron pnictides subject to band interactions with certain A(1g) momentum dependence. We determine the parameter regimes where an extended s-wave pairing instability with and without nodes emerges. For electron doping, the parameter regime in which a nodal gap appears is in correspondence to recent predictions [A. Chubukov , arXiv:0903.5547 (unpublished)], however, at very low T(c). Upon hole doping, the s-wave gap never becomes nodal: above a critical strength of the intraband repulsion, the system favors an exotic extended d-wave instability on the enlarged hole pockets. At half filling, we find that a strong momentum dependence of interband pair hopping yields an extended s-wave instability instead of spin-density wave ordering. These results demonstrate that an interaction anisotropy around the Fermi surfaces generally leads to a pronounced sensitivity of the pairing state on the system parameters.

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