Probing -wave superconductivity in UTe via point-contact junctions
arXiv:2403.00933
Abstract
Uranium ditelluride (UTe) is the strongest contender to date for a -wave superconductor in bulk form. Here we perform a spectroscopic study of the ambient pressure superconducting phase of UTe, measuring conductance through point-contact junctions formed by metallic contacts on different crystalline facets down to 250 mK and up to 18 T. Fitting a range of qualitatively varying spectra with a Blonder-Tinkham-Klapwijk(BTK) model for -wave pairing, we can extract gap amplitude and interface barrier strength for each junction. We find good agreement with the data for a -wave gap function with amplitude in 0.26 0.06 meV. Our work provides spectroscopic evidence for a gap structure consistent with the proposed spin-triplet pairing in the superconducting state of UTe.