English

Supercurrent in ferromagnetic Josephson junctions with heavy metal interlayers

Superconductivity 2018-06-15 v2

Abstract

The lengthscale over which supercurrent from conventional BCS, ss-wave, superconductors (SS) can penetrate an adjacent ferromagnetic (FF) layer depends on the ability to convert singlet Cooper pairs into triplet Cooper pairs. Spin aligned triplet Cooper pairs are not dephased by the ferromagnetic exchange interaction, and can thus penetrate an FF layer over much longer distances than singlet Cooper pairs. These triplet Cooper pairs carry a dissipationless spin current and are the fundamental building block for the fledgling field of superspintronics. Singlet-triplet conversion by inhomogeneous magnetism is well established. Here, we describe an attempt to use spin orbit coupling as a new mechanism to mediate singlet-triplet conversion in SFSS-F-S Josephson junctions. We report that the addition of thin Pt spin-orbit coupling layers in our Josephson junctions significantly increases supercurrent transmission, however the decay length of the supercurrent is not found to increase. We attribute the increased supercurrent transmission to Pt acting as a buffer layer to improve the growth of the Co FF layer.

Keywords

Cite

@article{arxiv.1803.01965,
  title  = {Supercurrent in ferromagnetic Josephson junctions with heavy metal interlayers},
  author = {Nathan Satchell and Norman O. Birge},
  journal= {arXiv preprint arXiv:1803.01965},
  year   = {2018}
}

Comments

20 pages, 4 figures

R2 v1 2026-06-23T00:43:10.205Z