Two-dimensional spatially ordered system of nickel nanowires probed by polarized SANS

Structural and magnetic properties of two-dimensional spatially ordered system of ferromagnetic nickel nanowires embedded into Al 2O 3 matrix have been studied using polarized small-angle neutron scattering. The small-angle diffraction pattern exhibits many diffraction peaks, which corresponds to th...

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Veröffentlicht in:Physica. B, Condensed matter Condensed matter, 2009-09, Vol.404 (17), p.2568-2571
Hauptverfasser: Napolskii, K.S., Chumakov, A.P., Grigoriev, S.V., Grigoryeva, N.A., Eckerlebe, H., Eliseev, A.A., Lukashin, A.V., Tretyakov, Yu.D.
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container_end_page 2571
container_issue 17
container_start_page 2568
container_title Physica. B, Condensed matter
container_volume 404
creator Napolskii, K.S.
Chumakov, A.P.
Grigoriev, S.V.
Grigoryeva, N.A.
Eckerlebe, H.
Eliseev, A.A.
Lukashin, A.V.
Tretyakov, Yu.D.
description Structural and magnetic properties of two-dimensional spatially ordered system of ferromagnetic nickel nanowires embedded into Al 2O 3 matrix have been studied using polarized small-angle neutron scattering. The small-angle diffraction pattern exhibits many diffraction peaks, which corresponds to the scattering from highly correlated hexagonal structure of pores and magnetic nanowires. Magnetic contribution to the scattering has complex behavior and cannot be explained without taking into account stray fields located between magnetized nanowires.
doi_str_mv 10.1016/j.physb.2009.06.029
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subjects Anodic aluminum oxide
Magnetic nanowires
Polarized small-angle neutron diffraction
title Two-dimensional spatially ordered system of nickel nanowires probed by polarized SANS
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