paper

Josephson effect in SXS junctions

arXiv:cond-mat/0205316 · doi:10.1134/1.1503330

Abstract

We investigate the Josephson effect in SXS junctions, where S is a superconducting material with a ferromagnetic exchange field, and X a weak link. The critical current increases with the (antiparallel) exchange fields if the distribution of transmission eigenvalues of the X-layer has its maximum weight at small values. This exchange field enhancement of the supercurrent does not exist if X is a diffusive normal metal. At low temperatures, there is a correspondence between the critical current in an SIS junction with collinear orientations of the two exchange fields, and the AC supercurrent amplitude in an SIS tunnel junction. The difference of the exchange fields in an SIS junction corresponds to the potential difference in an SIS junction; i.e., the singularity in [in an SIS junction] at is the analogue of the Riedel peak. We also discuss the AC Josephson effect in SIS junctions.

5 pages, 5 figures

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