paper

The effect of non-superconducting dopants (Mn, V, Cr and Cu) on the nematic fluctuations in iron-based superconductors

arXiv:1905.03941

Abstract

We have systematically studied the nematic susceptibility in non-superconducting Ba(FeTM)As (TM = Cr, Mn, V and Cu) by measuring the uniaxial pressure dependence of the resistivity along the Fe-As-Fe direction. The nematic susceptibilities in all samples show the Curie-Weiss-like behavior at high temperatures, where the nematic Curie constant can be derived, similar to the Curie constant in a paramagnetism. While all these dopants do not introduce superconductivity in BaFeAs, their effects on nematic fluctuations are different. In Mn, Cr and V doped samples, decreases significantly with the increasing doping level. On the other hand, increases dramatically with Cu doping, similar to the superconducting Ni-doped BaFeAs. However, the nematic susceptibility is suppressed at low temperatures for larger than , which may be related to the short-range antiferromagnetic order that survives up to very high doping level. Doping Mn, Cr and Cu into the optimally-doped superconducting BaFe(AsP) also strongly reduces . Compared with those systems that clearly exhibit superconductivity, such as Ni, K or P doped samples, our results suggest a strong connection between the nematic and spin degrees of freedom. Moreover, the reason of the suppression of superconductivity by dopants such as Cr, Mn, V and Cu may be correlated with the suppression of nematic fluctuations.

8 pages, 5 figures