Quasi-one-dimensional Fulde-Ferrell-Larkin-Ovchinnikov-like state in Nb/Cu0.41Ni0.59 bilayers

被引:0
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作者
A. S. Sidorenko
V. I. Zdravkov
J. Kehrle
R. Morari
G. Obermeier
S. Gsell
M. Schreck
C. Müller
M. Yu. Kupriyanov
V. V. Ryazanov
S. Horn
L. R. Tagirov
R. Tidecks
机构
[1] Institute of Electronic Engineering and Industrial Technologies ASM,Institut für Physik
[2] Universität Augsburg,Institute of Nuclear Physics
[3] Moscow State University,Institute for Solid State Physics
[4] Russian Academy of Sciences,Solid State Physics Department
[5] Kazan State University,Institute of Nanotechnology
[6] Karlsuhe Institute of Technology,undefined
来源
JETP Letters | 2009年 / 90卷
关键词
74.45.+c; 74.62.-c; 74.78.Na;
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摘要
In a ferromagnet (F) being in contact with a superconductor (S) an unconventional finite-momentum pairing of electrons forming Cooper pairs occurs. As a consequence, interference effects of the pairing wave function, leading to an oscillation of the critical temperature for increasing F-layer thickness in S/F bilayers, including extinction and recovery of the superconducting state, were predicted by theory. We observed experimentally all types of this behavior, calculated theoretically, in Nb/Cu1 − xNix bilayers (x = 0.59) of nanometer film thickness, prepared by magnetron sputtering (utilizing a moving magnetron deposition technique to provide a superb homogeneity of the ultrathin Nb layers), including a double extinction of superconductivity, giving evidence for a multiple reentrant state.
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页码:139 / 142
页数:3
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