Search Results - "Kosubek, E"

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  1. 1

    Manipulation of spin reorientation transition by oxygen surfactant growth: a combined theoretical and experimental approach by Hong, Jisang, Wu, R Q, Lindner, J, Kosubek, E, Baberschke, K

    Published in Physical review letters (09-04-2004)
    “…A new procedure described to manipulate the spin reorientation transition (SRT) in ultrathin ferromagnetic films, i.e., the oxygen assisted surfactant growth…”
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    Journal Article
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    Improved growth and the spin reorientation transition of Ni on (√2×2√2)R45° reconstructed O/Cu(0 0 1) by Lindner, J., Poulopoulos, P., Nünthel, R., Kosubek, E., Wende, H., Baberschke, K.

    Published in Surface science (01-01-2003)
    “…Ni films between 1 and 20 monolayers (ML) thick are deposited at room temperature on clean and (√2×2√2)R45° reconstructed––via oxygen adsorption––Cu(0 0 1). A…”
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    Journal Article
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    Epitaxial growth of Ni on Cu( [formula omitted]) with the assistance of O-surfactant and its magnetism compared to Ni/Cu( [formula omitted]) by Nünthel, R, Gleitsmann, T, Poulopoulos, P, Scherz, A, Lindner, J, Kosubek, E, Litwinski, Ch, Li, Z, Wende, H, Baberschke, K, Stolbov, S, Rahman, T.S

    Published in Surface science (10-05-2003)
    “…The growth of Ni films deposited on a reconstructed (√2×2√2)R45° O/Cu(0 0 1) is examined. It is shown that deposition of Ni changes the surface symmetry to c(2…”
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    Journal Article
  6. 6

    Magnetic anisotropy of MnAs-films on GaAs(0 0 1) studied with ferromagnetic resonance by Lindner, J., Toliński, T., Lenz, K., Kosubek, E., Wende, H., Baberschke, K., Ney, A., Hesjedal, T., Pampuch, C., Koch, R., Däweritz, L., Ploog, K.H.

    “…Thin films of MnAs grown on GaAs(0 0 1) show a self-organized structure of coexisting ferromagnetic α- and paramagnetic β-MnAs stripes in the temperature…”
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    Journal Article
  7. 7

    Magnetic anisotropies and dispersion relation of epitaxial Fe/InAs(001) films by Toliński, T., Lenz, K., Lindner, J., Kosubek, E., Baberschke, K., Spoddig, D., Meckenstock, R.

    Published in Solid state communications (01-12-2003)
    “…Magneto-transport effects investigated for the application in some hybrid structures need also a careful magnetic characterization. In our studies the angular…”
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    Journal Article
  8. 8

    Magnetic anisotropy of Co/Cu(111) ultrathin films by Farle, M., Platow, W., Kosubek, E., Baberschke, K.

    Published in Surface science (20-09-1999)
    “…The magnetic properties of ultrathin Co/Cu(111) films (2–10 ML) were investigated by ferromagnetic resonance in situ in ultrahigh vacuum. The surface…”
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    Journal Article
  9. 9

    Interlayer exchange coupling: an in situ investigation via ferromagnetic resonance by Lindner, J., Kosubek, E., Poulopoulos, P., Baberschke, K., Heinrich, B.

    “…A new absolute way to deduce the interlayer exchange coupling via in situ ferromagnetic resonance measurements in Cu/Ni/Cu/Ni/Cu(0 0 1) films is presented. The…”
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    Journal Article Conference Proceeding
  10. 10

    ‘Non-Gilbert-type’ damping of magnetic excitations in ultrathin ferromagnets: importance of magnon–magnon scattering by Lindner, J., Lenz, K., Kosubek, E., Baberschke, K., Spoddig, D., Meckenstock, R., Pelzl, J., Frait, Z., Mills, D.L.

    “…Ferromagnetic resonance (FMR) measured over a large range of frequencies from 1–70GHz offers a unique possibility to study the dynamic response of ultrathin…”
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    Journal Article
  11. 11

    Interlayer exchange coupling: an in situ investigation via ferromagnetic resonance by Lindner, J, Kosubek, E, Poulopoulos, P, Baberschke, K, Heinrich, B

    “…A new absolute way to deduce the interlayer exchange coupling via in situ ferromagnetic resonance measurements in Cu/Ni/Cu/Ni /Cu(001) films is presented. The…”
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    Journal Article
  12. 12

    T(3/2) dependence of the interlayer exchange coupling in ferromagnetic multilayers by Lindner, J, Rüdt, C, Kosubek, E, Poulopoulos, P, Baberschke, K, Blomquist, P, Wäppling, R, Mills, D L

    Published in Physical review letters (22-04-2002)
    “…The temperature dependence of the interlayer exchange coupling in ferromagnetic films coupled across nonmagnetic spacers is determined via in situ…”
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    Journal Article
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