Onset of the transitional flux-avalanche regime in bulk NbTi controlled by the thermal boundary conductance
arXiv:2608.07324
Abstract
Thermomagnetic avalanches in type-II superconductors occur in two qualitatively different regimes, electromagnetically controlled in thin films and thermally limited in bulk samples, distinguished by the sign of the temperature derivative of the threshold field . The two regimes are separated by a critical thermal boundary conductance , and a non-monotonic has been predicted in the transitional region where the interface conductance approaches . We approach this region in a bulk NbTi disk by raising the interface coupling above the pure-nonadecane baseline with a silver-filled interface layer. Whereas the pure interface gives a monotonically decreasing , the silver-filled interface produces a non-monotonic dependence not previously realized in a bulk superconductor: a temperature interval of positive slope, , terminating in a maximum at --~K. The effect is reproduced for two independent silver-filled compositions; in a third, with the highest loading, the low-temperature decrease is absent altogether and is flat up to the same , the evolution expected for stronger coupling. The position of the maximum is set by the intrinsic properties of NbTi, independent of the silver content. The onset of the positive-slope interval coincides in temperature with a change of the avalanche morphology from narrow channeled fingers to broad fronts. The reversal of the sign of is a direct experimental signature of the onset of the transitional regime, in which heat removal during the instability becomes dynamically relevant.
10 pages, 3 figures