Exactly solvable model of dissipative vortex tunneling
Superconductivity
2009-10-31 v3
Abstract
I consider the problem of vortex tunneling in a two-dimensional superconductor. The vortex dynamics is governed by the Magnus force and the Ohmic friction force. Under-barrier motion in the vicinity of the saddle point of the pinning potential leads to a model with quadratic Hamiltonian which can be analytically diagonalized. I find the dependence of the tunneling probability on the normal state quasiparticle relaxation time with a minimum at , where is the level spacing of the quasiparticle bound states inside the vortex core. The results agree qualitatively with the available experimental data.
Cite
@article{arxiv.cond-mat/0011476,
title = {Exactly solvable model of dissipative vortex tunneling},
author = {Akakii Melikidze},
journal= {arXiv preprint arXiv:cond-mat/0011476},
year = {2009}
}
Comments
RevTeX, 6 pages, 2 figures. Published version