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Author

  • Lenk, Daniel (5)
  • Krug von Nidda, Hans-Albrecht (4)
  • Morari, Roman (4)
  • Tidecks, Reinhard (4)
  • Horn, Siegfried R. (3)
  • Müller, Claus (3)
  • Obermeier, Günter (3)
  • Sidorenko, Anatoli S. (3)
  • Tagirov, Lenar R. (3)
  • Ullrich, Aladin Baldur Bernd (3)
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  • Lehrstuhl für Experimentalphysik V (4)
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Thickness dependence of the triplet spin-valve effect in superconductor–ferromagnet–ferromagnet heterostructures (2016)
Lenk, Daniel ; Zdravkov, Vladimir I. ; Kehrle, Jan-Michael ; Obermeier, Günter ; Ullrich, Aladin Baldur Bernd ; Morari, Roman ; Krug von Nidda, Hans-Albrecht ; Müller, Claus ; Kupriyanov, Mikhail Yu. ; Sidorenko, Anatoli S. ; Horn, Siegfried R. ; Deminov, Rafael G. ; Tagirov, Lenar R. ; Tidecks, Reinhard
Structural and magnetic properties of a superconducting spin-triplet-MRAM element (2017)
Lenk, Daniel ; Zdravkov, Vladimir I. ; Morari, Roman ; Seidov, Zakir ; Khaydukov, Yury ; Ullrich, Aladin Baldur Bernd ; Obermeier, Günter ; Müller, Claus ; Sidorenko, Anatoli S. ; Krug von Nidda, Hans-Albrecht ; Horn, Siegfried R. ; Tagirov, Lenar R. ; Tidecks, Reinhard
Investigation of superconducting proximity and magnetic stray field effects in superconductor/ferromagnet heterostructures (2017)
Zdravkov, Vladimir I. ; Lenk, Daniel ; Morari, Roman ; Seidov, Zakir ; Khaydukov, Yury ; Ullrich, Aladin Baldur Bernd ; Obermeier, Günter ; Müller, Claus ; Sidorenko, Anatoli S. ; Krug von Nidda, Hans-Albrecht ; Horn, Siegfried R. ; Tagirov, Lenar R. ; Tidecks, Reinhard
Mercury loss in fluorescent lamps - experiment and modelling (2021)
Lenk, Daniel
Neutron reflectometry studies of Gd/Nb and Cu30Ni70/Nb superlattices (2019)
Khaydukov, Y. ; Kravtsov, E. ; Morari, Roman ; Lenk, Daniel ; Mustafa, L. ; Kim, G. ; Trapp, M. ; Zhaketov, V. ; Proglyado, V. ; Zrdavkov, V. ; Nikitenko, Y. ; Krug von Nidda, Hans-Albrecht ; Keller, T. ; Steitz, R. ; Tidecks, Reinhard ; Sidorenko, A. ; Ustinov, V. ; Aksenov, V. ; Keimer, B.
We performed a comparative study of magnetic proximity effects in [Gd(5nm)/Nb(25nm)]12 and [Cu30Ni70(6nm)/Nb(27nm)]12 superlattices of S/F type by means of transport measurements and neutron scattering. Transport measurements have shown that Gd/Nb and CuNi/Nb superlattices shows 3D and 2D type of superconductivity respectively. In the case of proximity coupled Gd/Nb superconductor the effective thickness of the superconducting region, 300nm is enough to expel significant amount of applied magnetic field which was detected by neutron scattering. In decoupled CuNi/Nb superlattice thickness of every superconducting layer is only 27nm which is not enough to expel applied magnetic field. Our study shows how neutron reflectometry can be applied to study proximity coupling in superconducting/ferromagnet heterostructures.
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