Thermally-activated dynamics of spontaneous perpendicular vortices tuned by parallel magnetic fields in thin superconducting films
arXiv:1510.03259 · doi:10.1103/PhysRevB.86.024521
Abstract
We report magneto-transport measurements on a superconducting molybdenum-germanium (MoGe) film of thickness =50 nm in parallel magnetic fields and show evidence of a transition from a Meissner state to a resistive state of spontaneous perpendicular vortices generated by thermal fluctuations above a certain temperature . Here appears to match the vortex core explosion condition , where is the coherence length. For , we observed that a nonlinear current-voltage () response (Ohmic at low currents and the power law at higher ) is exponentially dependent on . We propose a model in which the resistive state at is due to thermally-activated hopping of spontaneous perpendicular vortices tuned by the pairbreaking effect of the parallel . keywords: vortex, vortices, fluxon, flux lattice, mixed state, lower critical field
References in corpus (4)
- Saddle point states in 2D superconducting film biased near the depairing current
- Size effects in the nonlinear resistance and flux creep in a virtual Berezinskii-Kosterlitz-Thouless state of superconducting films
- Vortex instability in molybdenum-germanium superconducting films
- Critical fields for vortex expulsion from narrow superconducting strips