Abrikosov vortex escape from a columnar defect as a topological electronic transition in vortex core
Superconductivity
2015-05-28 v2
Abstract
We study microscopic scenario of vortex escape from a columnar defect under the influence of a transport current. For defect radii smaller than the superconducting coherence length the depinning process is shown to be a consequence of two subsequent topological electronic transitions in a trapped vortex core. The first transition at a critical current is associated with the opening of Fermi surface segments corresponding to the creation of a vortex--antivortex pair bound to the defect. The second transition at a certain current is caused by merging of different Fermi surface segments, which accompanies the formation of a freely moving vortex.
Cite
@article{arxiv.1106.1971,
title = {Abrikosov vortex escape from a columnar defect as a topological electronic transition in vortex core},
author = {A. S. Mel'nikov and A. V. Samokhvalov},
journal= {arXiv preprint arXiv:1106.1971},
year = {2015}
}
Comments
5 pages, 4 figures