paper

Enhancement of the upper critical field in the cubic Laves-phase superconductor HfV by Nb doping

arXiv:1908.10007 · doi:10.1088/1361-6668/ab490e

Abstract

We report the effect of Nb doping on the upper critical field of the cubic Laves-phase superconductor HfV studied in a series of HfVNb samples with 0 0.3 under pulsed fields up to 30 T. The undoped HfV undergoes a martensitic structural transition around 110 K, and becomes superconducting below = 9.4 K. Upon Nb doping, while the structural transition is suppressed for 0.1, a maximum in of 10.1 K and zero-temperature upper critical field (0) of 22.4 T is found at = 0.2, which is ascribed to an increase of the density of states at the Fermi level. For all samples, the temperature dependence of can be well described by the Werthamer-Helfand-Hohenberg (WHH) theory that takes into account both the spin paramagnetic effect and spin orbit scattering. In addition, a comparison is made between the behavior of HfVNb and those of Nb-Ti and NbSn.

17 pages, 7 figures