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On the explanation of the paramagnetic Meissner effect in superconductor/ferromagnet heterostructures

Nagy, Bela, 1985- (author)
Linköpings universitet,Molekylär fysik,Tekniska fakulteten,Wigner Research Centre for Physics, Hungarian Academy of Sciences, Budapest, Hungary
Khaydukov, Yu. (author)
Max-Planck Institute for Solid State Research, Stuttgart, Germany; Max Planck Society Outstation at FRM-II, Garching, Germany; Skobeltsyn Institute of Nuclear Physics, Moscow State University, Moscow, Russia
Efremov, D. (author)
Max Planck Institute Solid State Research, Germany; Leibniz Institute Solid State and Mat Research Dresden, Germany
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Vasenko, A. S. (author)
National Research University Higher School of Economics, Moscow, Russia
Mustafa, L. (author)
Max-Planck Institute for Solid State Research, Stuttgart, Germany
Kim, J. -H. (author)
Max Planck Institute Solid State Research, Germany
Keller, T. (author)
Max Planck Institute Solid State Research, Germany; Max Planck Soc Outstn FRM II, Germany
Zhernenkov, K. (author)
Ruhr University of Bochum, Germany
Devishvili, A. (author)
Ruhr University of Bochum, Germany; Division of Physical Chemistry, Department of Chemistry, Lund University, Lund, Sweden
Steitz, R. (author)
Helmholtz-Zentrum für Materialien und Energie, Berlin, Germany
Keimer, B. (author)
Max Planck Institute Solid State Research, Germany
Bottyan, L. (author)
Wigner Research Centre for Physics, Hungarian Academy of Sciences, Budapest, Hungary
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 (creator_code:org_t)
2016-11-18
2016
English.
In: Europhysics letters. - : Institute of Physics (IOP). - 0295-5075 .- 1286-4854. ; 116:1
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • An increase of the magnetic moment in superconductor/ferromagnet (S/F) bilayers V(40 nm)/F (F = Fe(1, 3 nm), Co(3 nm), Ni(3 nm)) was observed using SQUID magnetometry upon cooling below the superconducting transition temperature TC in magnetic fields of 10 Oe to 50 Oe applied parallel to the sample surface. A similar increase, often called the paramagnetic Meissner effect (PME), was observed before in various superconductors and superconductor/ferromagnet systems. To explain the PME effect in the presented S/F bilayers a model based on a row of vortices located at the S/F interface is proposed. According to the model the magnetic moment induced below TC consists of the paramagnetic contribution of the vortex cores and the diamagnetic contribution of the vortex-free region of the S layer. Since the thickness of the S layer is found to be 3-4 times less than the magnetic-field penetration depth, this latter diamagnetic contribution is negligible. The model correctly accounts for the sign, the approximate magnitude and the field dependence of the paramagnetic and the Meissner contributions of the induced magnetic moment upon passing the superconducting transition of a ferromagnet/superconductor bilayer. Copyright (C) EPLA, 2016.

Subject headings

NATURVETENSKAP  -- Fysik -- Den kondenserade materiens fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Condensed Matter Physics (hsv//eng)

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