Supercurrents through gated superconductor-normal-metal-superconductor contacts: the Josephson-transistor
Abstract
We analyze the transport through a narrow ballistic superconductor-normal- metal-superconductor Josephson contact with non-ideal transmission at the superconductor-normal-metal interfaces, e.g., due to insulating layers, effective mass steps, or band misfits (SIN interfaces). The electronic spectrum in the normal wire is determined through the combination of Andreev- and normal reflection at the SIN interfaces. Strong normal scattering at the SIN interfaces introduces electron- and hole-like resonances in the normal region which show up in the quasi-particle spectrum. These resonances have strong implications for the critical supercurrent which we find to be determined by the lowest quasi-particle level: tuning the potential to the points where electron- and hole-like resonances cross, we find sharp peaks in , resulting in a transitor effect. We compare the performance of this Resonant Josephson-Transistor (RJT) with that of a Superconducting Single Electron Transistor (SSET).
Keywords
Cite
@article{arxiv.cond-mat/0101248,
title = {Supercurrents through gated superconductor-normal-metal-superconductor contacts: the Josephson-transistor},
author = {D. Kuhn and N. M. Chtchelkatchev and G. B. Lesovik and G. Blatter},
journal= {arXiv preprint arXiv:cond-mat/0101248},
year = {2009}
}
Comments
to appear in PRB, 11 pages, 9 figures