Superconductivity in a Mesoscopic Double Square Loop: Effect of Imperfections
arXiv:cond-mat/0001201 · doi:10.1103/PhysRevB.62.9186
Abstract
We have generalized the network approach to include the effects of short-range imperfections in order to analyze recent experiments on mesoscopic superconducting double loops. The presence of weakly scattering imperfections causes gaps in the phase boundary or for certain intervals of , which depend on the magnetic flux penetrating each loop. This is accompanied by a critical temperature , showing a smooth transition between symmetric and antisymmetric states. When the scattering strength of imperfections increases beyond a certain limit, gaps in the phase boundary or appear for values of magnetic flux lying in intervals around half-integer . The critical temperature corresponding to these values of magnetic flux is determined mainly by imperfections in the central branch. The calculated phase boundary is in good agreement with experiment.
9 pages, 6 figures