Superconductivity in the Nb-Ru-Ge -Phase
arXiv:1710.03347 · doi:10.1103/PhysRevMaterials.1.074802
Abstract
We show that the previously unreported ternary -phase material NbRuGe is a superconductor with a critical temperature of 2.2 K. Temperature-dependent magnetic susceptibility, resistance, and specific heat measurements were used to characterize the superconducting transition. The Sommerfeld constant for NbRuGe is 91 mJ mol-f.u.K and the specific heat anomaly at the superconducting transition, C/T, is approximately 1.38. The zero-temperature upper critical field (H(0)) was estimated to be 2 T by resistance data. Field-dependent magnetization data analysis estimated H(0) to be 5.5 mT. Thus, the characterization shows NbRuGe to be a type II BCS superconductor. This material appears to be the first reported ternary phase in the Nb-Ru-Ge system, and the fact that there are no previously reported binary Nb-Ru, Nb-Ge, or Ru-Ge -phases shows that all three elements are necessary to stabilize the material. A -phase in the Ta-Ru-Ge system was synthesized but did not display superconductivity above 1.7 K, which suggests that electron count cannot govern the superconductivity observed. Preliminary characterization of a possible superconducting -phase in the Nb-Ru-Ga system is also reported.
7 pages, 8 figures, 3 tables