English

Novel dynamics and critical currents in fast superconducting vortices at high pulsed magnetic fields

Superconductivity 2019-05-17 v2

Abstract

Non-linear electrical transport studies at high-pulsed magnetic fields, above the range accessible by DC magnets, are of direct fundamental relevance to the physics of superconductors, domain-wall, charge-density waves, and topological semi-metal. All-superconducting very-high field magnets also make it technologically relevant to study vortex matter in this regime. However, pulsed magnetic fields reaching 100 T in milliseconds impose technical and fundamental challenges that have prevented the realization of these studies. Here, we present a technique for sub-microsecond, smart, current-voltage measurements, which enables determining the superconducting critical current in pulsed magnetic fields, beyond the reach of any DC magnet. We demonstrate the excellent agreement of this technique with low DC field measurements on Y0.77_{0.77}Gd0.23_{0.23}Ba2_2Cu3_3O7_7 coated conductors with and without BaHfO3_3 nanoparticles. Exploring the uncharted high magnetic field region, we discover a characteristic influence of the magnetic field rate of change (dH/dtdH/dt) on the current-voltage curves in a superconductor. We fully capture this unexplored vortex physics through a theoretical model based on the asymmetry of the vortex velocity profile produced by the applied current.

Keywords

Cite

@article{arxiv.1903.04658,
  title  = {Novel dynamics and critical currents in fast superconducting vortices at high pulsed magnetic fields},
  author = {Maxime Leroux and Fedor F. Balakirev and Masashi Miura and Kouki Agatsuma and Leonardo Civale and Boris Maiorov},
  journal= {arXiv preprint arXiv:1903.04658},
  year   = {2019}
}

Comments

9 pages, 7 figures