Published 2016 | Version v1
Journal article

Superconductivity and fluctuations in Ba1–pKpFe2As2 and Ba(Fe1–nCon)2As2

  • 1. SLAC National Accelerator Laboratory, Menlo Park, CA (United States). Stanford Institute for Materials and Energy Sciences (SIMES)
  • 2. Technical University of Munich, Garching (Germany). Faculty of Physics
  • 3. Bavarian Academy of Sciences and Humanities, Garching (Germany). Walther Meissner Institute

Description

In this paper, we study the interplay of fluctuations and superconductivity in BaFe2As2 (Ba-122) compounds with Ba and Fe substituted by K (p doping) and Co (n doping), respectively. To this end, we measured electronic Raman spectra as a function of polarization and temperature. We observe gap excitations and fluctuations for all doping levels studied. The response from fluctuations is much stronger for Co substitution and, according to the selection rules and the temperature dependence, originates from the exchange of two critical spin fluctuations with characteristic wave vectors (±π,0) and (0,±π). At 22% K doping (p = 0.22), we find the same selection rules and spectral shape for the fluctuations but the intensity is smaller by a factor of 5. Since there exists no nematic region above the orthorhombic spin-density-wave (SDW) phase, the identification of the fluctuations via the temperature dependence is not possible. The gap excitations in the superconducting state indicate strongly anisotropic near-nodal gaps for Co substitution which make the observation of collective modes difficult. The variation with doping of the spectral weights of the A1g and B1g gap features does not support the influence of fluctuations on Cooper pairing. Thus, the observation of Bardasis–Schrieffer modes inside the nearly clean gaps on the K-doped side remains the only experimental evidence for the relevance of fluctuations for pairing.

Availability note (English)

Available from http://www.osti.gov/pages/biblio/1349070; DOE Accepted Manuscript full text, or the publishers Best Available Version will be available free of charge after the embargo period

Additional details

Publishing Information

Journal Title
Physica Status Solidi. B, Basic Research
Journal Volume
254
Journal Issue
1
Journal Page Range
vp.
ISSN
0370-1972