arXiv · 0907.2505
Spontaneous Fluxoid Formation in Superconducting Loops
Abstract
We report on the first experimental verification of the Zurek-Kibble scenario in an isolated superconducting ring over a wide parameter range. The probability of creating a single flux quantum spontaneously during the fast normal-superconducting phase transition of a wide Nb loop clearly follows an allometric dependence on the quenching time $\tau_{Q}$, as one would expect if the transition took place as fast as causality permits. However, the observed Zurek-Kibble scaling exponent $\sigma = 0.62\pm0.15$ is two times larger than anticipated for large loops. Assuming Gaussian winding number densities we show that this doubling is well-founded for small annuli.
Explore related subjects
Keep this discovery
R. Monaco, J. Mygind, R. J. Rivers, V. P. Koshelets. 2009-07-15. Spontaneous Fluxoid Formation in Superconducting Loops. https://doi.org/10.1103/physrevb.80.180501
Cite the original work for its findings. Save a collection to share your selection of sources.