English

Proximity Effects in Conical-Ferromagnet/Superconductor bilayers

Superconductivity 2013-03-01 v1

Abstract

We study various aspects of proximity effects in F/SF/S (Ferromagnet/Superconductor) bilayers, where FF has a spiral magnetic texture such as that found in Holmium, Erbium and other materials, and SS is a conventional s-wave superconductor. We numerically solve the Bogoliubov-de Gennes (BdG) equations self-consistently and use the solutions to compute quantities relevant to the proximity effects in these bilayers. We obtain the relation between the superconducting transition temperature TcT_c and the thicknesses dFd_F of the magnetic layer by solving the linearized BdG equations. We find that the Tc(dF)T_c(d_F) curves include multiple oscillations. Moreover, the system may be reentrant not only with dFd_F, as is the case when the magnet is uniform, but with temperature TT: the superconductivity disappears in certain ranges of dFd_F or TT. The TT reentrance occurs when dFd_F is larger than the spatial period of the conical exchange field. We compute the condensation free energies and entropies from the full BdG equations and find the results are in agreement with TcT_c values obtained by linearization. The inhomogeneous nature of the magnet makes it possible for all odd triplet pairing components to be induced. We have investigated their properties and found that, as compared to the singlet amplitude, both the m=0m=0 and m=±1m=\pm 1 triplet components exhibit long range penetration. For nanoscale bilayers, the proximity lengths for both layers are also obtained. These lengths oscillate with dFd_F and they are found to be long range on both sides. These results are shown to be consistent with recent experiments. We also calculate the reverse proximity effect described by the three dimensional local magnetization, and the local DOS, which reveals important energy resolved signatures associated with the proximity effects.

Keywords

Cite

@article{arxiv.1210.3636,
  title  = {Proximity Effects in Conical-Ferromagnet/Superconductor bilayers},
  author = {Chien-Te Wu and Oriol T. Valls and Klaus Halterman},
  journal= {arXiv preprint arXiv:1210.3636},
  year   = {2013}
}

Comments

16 pages including figures

R2 v1 2026-06-21T22:20:54.882Z