paper

Superconducting critical temperature and singlet and triplet pair functions of superconductor/normal-metal/ferromagnet trilayers

arXiv:cond-mat/0701705

Abstract

We calculate the superconducting critical temperature , the singlet pair function , and triplet pair function of superconductor/normal metal/ferromagnet (S/N/F) trilayers using the linearized Usadel equation near . The Green's function method developed by Fominov for the S/F bilayers is extended to the S/N/F trilayer systems. The S of the trilayers is taken to be an s-wave singlet pairing superconductor, and the S/N and N/F interfaces are modeled in terms of the interface resistances parameterized, respectively, by and . We present the , , and for typical , , and the exchange energy : (a) For a small (large) , of S/N/F trilayers, as is increased, increases (decreases) on the length scale of N coherence length with a discontinuity at due to a boundary condition mismatch. (b) shows a non-monotonic behavior like S/F bilayers with a weakened shallow dip. (c) The odd frequency triplet component , induced by and proximity effects, has a maximum near the N/F interface and decreases on the length scale in F. It also penetrates into N and S regions on the length scale and , respectively. Based on these results we make comments on the experimental observation of the odd triplet components and the recent measurements in Nb/Au/CoFe trilayer systems.

Accepted for publication in Phys. Rev. B