University Sétif 1 FERHAT ABBAS Faculty of Sciences
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Auteur Ouarab, nouredine |
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Etude théorique des propriétés structurales, de la structure électronique, du magnétisme et de l'effet Kerr dans les films ultraminces ferrimagnétiques / Ouarab, nouredine
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Titre : Etude théorique des propriétés structurales, de la structure électronique, du magnétisme et de l'effet Kerr dans les films ultraminces ferrimagnétiques Type de document : texte imprimé Auteurs : Ouarab, nouredine ; A. Haroun, Directeur de thèse Editeur : Setif:UFA Année de publication : 2016 Importance : 1 vol. (105 f.) Catégories : Thèses & Mémoires:Physique Mots-clés : DFT
Ferrimagnétisme
Effet Kerr
Transition de réorientation de spin
Films ultrafinsRésumé : By means of DFT, we investigate the structural, magnetic and magneto-optical
properties of Cr ultrathin film on semi-infinite Ag substrate. The results show that Cr ultrathin
film crystalizes in bct structure with lattice parameters (a=b= 2.88 Ã…, c/a=1.25) and it favor
ferrimagnetic coupling between Cr planes. The anisotropy is shown to be perpendicular to the
surface by polar-magneto-optical Kerr effect. The magnetic moment at free surface of Cr film
reach the value of 3,78 μB. In Mn ultrathin film on Ag or Au in the direction of (001), the
result shows that the applied strain of bct Mn film from lattice parameter a=2.89 Ã… to lattice
value of 2.73 Ã… induces ferrimagnetic behavior between Mn layers. The magnetic easy axis of
Mn film was demonstrated theoretically to switch from the in-plane to out-of-plane by
magneto-optical Kerr effect investigation. By including spin-orbit coupling in full potential
linearized augmented plane waves and linearized muffin-tin orbitals methods, manganese
ultrathin film displays different magnetic behaviors and the spin-reorientation transition is
shown to be correlated to these structural changes. The calculated magnetic moment of
manganese planes are enhanced and reach a value of ~ 4.02 μB in the case of Ag substrate and
reach a value of 4.30 μB in the case of Au substrate. The polar magneto-optical Kerr effect is
calculated for a photon energy range extended to 10 eV. It shows a pronounced peak in
visible light.Côte titre : DPH/0194 En ligne : https://drive.google.com/file/d/1ZOgfuPRLLnW34oS6DLsRMDZeFYHVNJmz/view?usp=shari [...] Format de la ressource électronique : Etude théorique des propriétés structurales, de la structure électronique, du magnétisme et de l'effet Kerr dans les films ultraminces ferrimagnétiques [texte imprimé] / Ouarab, nouredine ; A. Haroun, Directeur de thèse . - [S.l.] : Setif:UFA, 2016 . - 1 vol. (105 f.).
Catégories : Thèses & Mémoires:Physique Mots-clés : DFT
Ferrimagnétisme
Effet Kerr
Transition de réorientation de spin
Films ultrafinsRésumé : By means of DFT, we investigate the structural, magnetic and magneto-optical
properties of Cr ultrathin film on semi-infinite Ag substrate. The results show that Cr ultrathin
film crystalizes in bct structure with lattice parameters (a=b= 2.88 Ã…, c/a=1.25) and it favor
ferrimagnetic coupling between Cr planes. The anisotropy is shown to be perpendicular to the
surface by polar-magneto-optical Kerr effect. The magnetic moment at free surface of Cr film
reach the value of 3,78 μB. In Mn ultrathin film on Ag or Au in the direction of (001), the
result shows that the applied strain of bct Mn film from lattice parameter a=2.89 Ã… to lattice
value of 2.73 Ã… induces ferrimagnetic behavior between Mn layers. The magnetic easy axis of
Mn film was demonstrated theoretically to switch from the in-plane to out-of-plane by
magneto-optical Kerr effect investigation. By including spin-orbit coupling in full potential
linearized augmented plane waves and linearized muffin-tin orbitals methods, manganese
ultrathin film displays different magnetic behaviors and the spin-reorientation transition is
shown to be correlated to these structural changes. The calculated magnetic moment of
manganese planes are enhanced and reach a value of ~ 4.02 μB in the case of Ag substrate and
reach a value of 4.30 μB in the case of Au substrate. The polar magneto-optical Kerr effect is
calculated for a photon energy range extended to 10 eV. It shows a pronounced peak in
visible light.Côte titre : DPH/0194 En ligne : https://drive.google.com/file/d/1ZOgfuPRLLnW34oS6DLsRMDZeFYHVNJmz/view?usp=shari [...] Format de la ressource électronique : Exemplaires (1)
Code-barres Cote Support Localisation Section Disponibilité DPH/0194 DPH/0194 Mémoire Bibliothéque des sciences Français Disponible
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