English

Moving flux quanta cool superconductors by a microwave breath

Superconductivity 2020-02-25 v1

Abstract

Almost any use of a superconductor implies a nonequilibrium state. Remarkably, the non-equilibrium states induced by a microwave stimulus and the dynamics of magnetic flux quanta (Abrikosov vortices) can give rise to strikingly contrary effects: A sufficiently high-power electromagnetic field of GHz frequency can stimulate superconductivity, whereas fast vortex motion can trigger an instability abruptly quenching the superconducting state. Here, we advance or delay such dynamical quenching of the vortex state in Nb thin films by tuning the power and frequency of the microwave ac stimulus added to a dc bias current. The experimental findings are supported by time-dependent Ginzburg-Landau simulations and they can be explained qualitatively based on a model of "breathing mobile hot spots", implying a competition of heating and cooling of quasiparticles along the trajectories of moving fluxons whose core sizes vary in time. In addition, we demonstrate universality of the stimulation effect on the thermodynamic and transport properties of type II superconductors.

Keywords

Cite

@article{arxiv.2002.10343,
  title  = {Moving flux quanta cool superconductors by a microwave breath},
  author = {O. V. Dobrovolskiy and C. Gonzalez-Ruano and A. Lara and R. Sachser and V. M. Bevz and V. A. Shklovskij and A. I. Bezuglyj and R. V. Vovk and M. Huth and F. G. Aliev},
  journal= {arXiv preprint arXiv:2002.10343},
  year   = {2020}
}

Comments

11 pages. 7 figures