The discovery of high-temperature superconductivity in iron pnictides raised the possibility of an unconventional superconducting mechanism in multiband materials. The observation of Fermi-surface(FS)-dependent nodeless superconducting gaps suggested that inter-FS interactions may play a crucial role in superconducting pairing. In the optimally hole-doped Ba0.6K0.4Fe2As2, the pairing strength is enhanced simultaneously (2Δ/Tc∼7) on the nearly nested FS pockets, i.e. the inner holelike (α) FS and the two hybridized electronlike FSs, while the pairing remains weak (2Δ/Tc∼3.6) in the poorly-nested outer hole-like (β) FS. Here we report that in the electron-doped BaFe1.85Co0.15As2 the FS nesting condition switches from the α to the β FS due to the opposite size changes for hole- and electron-like FSs upon electron doping. The strong pairing strength (2Δ/Tc∼6) is also found to switch to the nested β FS, indicating an intimate connection between FS nesting and superconducting pairing, and strongly supporting the inter-FS pairing mechanism in the iron-based superconductors.
@article{arxiv.0812.3704,
title = {Fermi surface nesting induced strong pairing in iron-based superconductors},
author = {K. Terashima and Y. Sekiba and J. H. Bowen and K. Nakayama and T. Kawahara and T. Sato and P. Richard and Y. -M. Xu and L. J. Li and G. H. Cao and Z. -A. Xu and H. Ding and T. Takahashi},
journal= {arXiv preprint arXiv:0812.3704},
year = {2015}
}