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Ferromagnetic and spin wave resonances in thin layer of expanded austenite phase
Authors:J Typek  N Guskos  G Zolnierkiewicz  P Berczynski  A Guskos  J Baranowska  S Fryska
Affiliation:1. Institute of Physics, West Pomeranian University of Technology, al. Piastów 48, 70-311, Szczecin, Poland
2. Department of Solid State, Faculty of Physics, University of Athens, Panepistimiopolis, 15 784, Greece
3. Institute of Materials Science and Engineering, West Pomeranian University of Technology, al. Piastów 17, 70-310, Szczecin, Poland
Abstract:Four samples of austenite coatings deposited by reactive magnetron sputtering on silicon substrate at four different temperatures and pressures were investigated by ferromagnetic resonance (FMR) method at room temperature. The expanded austenite phase S (γ N ) layers with thickness in the 160–273 nm range and concentration of magnetic atoms: 72 % Fe, 18 % Cr and 10 % Ni, were obtained. The coatings with nanometric size grains were strongly textured and grown mostly in 100] direction, perpendicular to the sample surface. Intense FMR spectra were recorded at various angles between the static magnetic field direction and the sample surface. A strong magnetic anisotropy of the main uniform FMR mode was observed and the effective magnetization 4πM eff determined. Spin wave resonance (SWR) modes were observed in all investigated samples in out-of-plane geometry of the magnetic field. The resonance fields of SWR modes in our samples varied linearly with the spin wave mode number. The value of the effective magnon stiffness constant was determined assuming a parabolic shape of the magnetization variation across the sample thickness.
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