SR study of unconventional pairing symmetry in the quasi-1D NaCrAs superconductor
arXiv:2111.05492
Abstract
We report the finding of a novel pairing state in a newly discovered superconductor NaCrAs. This material has a noncentrosymmetric quasi-one-dimensional crystal structure and is superconducting at 8.0 K. We find that the magnetic penetration depth data suggests the presence of a nodal line -wave pairing state with zero magnetic moment using transverse-field muon-spin rotation (TF-SR) measurements. The nodal gap observed in NaCrAs compound is consistent with that observed in isostructural (K,Cs)CrAs compounds using TF-SR measurements. The observed pairing state is consistent with a three-band model spin-fluctuation calculation, which reveals the spin-triplet pairing state with the pairing symmetry. The long-sought search for chiral superconductivity with topological applications could be aided by such a novel triplet -wave pairing state.
9 pages, 3 figures