Large-scale superconductivity-induced conductance suppression in mesoscopic normal-superconducting structures
Abstract
Experiments on hybrid superconducting normal-metal structures have revealed that even in the absence of tunnel junctions the onset of superconductivity can lead to a decrease in the electrical conductance by an amount many orders of magnitude greater than . In this Letter we provide a theory of this phenomenon which shows that it originates from an instability in 4 - probe conductance measurements which is absent from 2-probe measurements. We compare the zero-bias,zero-temperature 4-probe conductances and of a normal diffusive metal in contact with a superconductor in both the normal (N) and superconducting (S) states respectively. In the absence of tunnel barriers, the ensemble average of the difference vanishes, in agreement with quasi-classical theory. However we also predict that there exists macroscopic sample specific fluctuations in , which lie beyond quasi-classical theory and allow large negative values of to occur.
Cite
@article{arxiv.cond-mat/9712166,
title = {Large-scale superconductivity-induced conductance suppression in mesoscopic normal-superconducting structures},
author = {R. Seviour and C. J. Lambert and M. Leadbeater},
journal= {arXiv preprint arXiv:cond-mat/9712166},
year = {2007}
}
Comments
4 pages, 3 figures