DocumentCode :
2947029
Title :
Highly ordered FePd and FePt nanostructures
Author :
Lukaszew, R. ; Skuza, J. ; Cebollada, A. ; Clavero, C. ; Garcia-Martin, J.
Author_Institution :
Toledo Univ., Toledo
fYear :
2006
fDate :
8-12 May 2006
Firstpage :
760
Lastpage :
760
Abstract :
In the present study we show two variations of the bottom-up approach. First our correlated structural and magnetic properties studies on epitaxial FePd films grown on (001) MgO will show that this particular system does exhibit perpendicular magnetic anisotropy and it is also nano-structured due to 3-dimensional growth mode on the chosen substrate. We also note here that the highly-ordered nanostructures embedded in the chemically disordered alloy film are magnetically coupled. We found that capping the films with a thin MgO layer significantly lowers interparticle coupling. For the FePt system we have used ion-implantation of Fe ions on epitaxial Pt films followed by rapid thermal treatments. We have achieved controlled nano-patterning, large perpendicular magnetic anisotropy and decoupled highly ordered nano-structures. We present our correlated structural (XRD, AFM, TEM) and magnetic (MFM, Kerr magnetometry) characterizations on the two systems studied. Our observations are useful to further understand magnetic anisotropy properties at the nano-scale for new media applications.
Keywords :
Kerr magneto-optical effect; X-ray diffraction; atomic force microscopy; ion implantation; iron alloys; magnesium compounds; magnetic force microscopy; nanostructured materials; palladium alloys; perpendicular magnetic anisotropy; platinum alloys; rapid thermal annealing; transmission electron microscopy; AFM; FePd; FePt; Kerr magnetometry; MFM; MgO; TEM; XRD; disordered alloy film; interparticle coupling; ion-implantation; magnetic properties; nanopatterning; nanostructure material; perpendicular magnetic anisotropy; structural properties; Chemicals; Couplings; Iron; Magnetic anisotropy; Magnetic films; Magnetic properties; Nanostructures; Perpendicular magnetic anisotropy; Substrates; X-ray scattering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference, 2006. INTERMAG 2006. IEEE International
Conference_Location :
San Diego, CA
Print_ISBN :
1-4244-1479-2
Type :
conf
DOI :
10.1109/INTMAG.2006.376484
Filename :
4262193
Link To Document :
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