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Titre: A comparative structural and magnetic study of Fe100-xPdx(x=15, 20 and 36) thin films deposited on Si (100) and glass substrates
Auteur(s): Bahamida, Saida
Fnidiki, A.
Laggoun, A.
Guittoum, A.
Mots-clés: Coercitive field
FePd
Magnetic properties
Microstructure
Thin films
Coercive force
Crystal structure
Film thickness
Glass
Iron alloys
Magnetic properties
Magnetism
Microstructure
Thermal evaporation
Date de publication: 2015
Editeur: Elsevier
Collection/Numéro: View at Publisher| Export | Download | More... Journal of Magnetism and Magnetic Materials/vol. 392, 25 May 2015,;pp. 139-147
Résumé: Various structural and magnetic characterization techniques have been used to investigate Fe100-xPdx (x=15, 20 and 36) thin films deposited onto silicon and glass substrates, by thermal evaporation technique. X-ray diffraction analysis shows the presence of supersaturated solid solution with bcc structure for Pd concentrations of 15% and 20%. However, for 36% of Pd, in addition to the supersaturated α-FePd (bcc) phase, another disordered FePd3 phase with fcc structure is present. At 20 at% Pd, the magnetic characterization shows a saturation of the bcc (α-FePd) phase and the appearance of the fcc phase. The correlation between the structure and magnetic properties allows us to compare the two substrates effects on deposited thin films. As results, the measurements indicate that the grain size D, the thin film thickness and the d(110) spacing significantly affect the magnetic coercivity HC. The Fe-Pd alloys deposited on a monocrystalline Si (100) and glass substrate show that the coercivity HC is given by the random anisotropy model. & 2015
URI/URL: http://dlibrary.univ-boumerdes.dz:8080123456789/1619
ISSN: 03048853
Collection(s) :Publications Internationales

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