Serveur d'exploration sur le nickel au Maghreb

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Microstructure and magnetic properties of Ni3Fe solid solution thin films deposited by DC-magnetron sputtering

Identifieur interne : 000189 ( Main/Exploration ); précédent : 000188; suivant : 000190

Microstructure and magnetic properties of Ni3Fe solid solution thin films deposited by DC-magnetron sputtering

Auteurs : M. Arab Pour Yazdi [France] ; N. Fenineche [France] ; E. Aubry [France] ; A. Kaibi [Algérie] ; A. Billard [France]

Source :

RBID : Pascal:13-0190973

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English descriptors

Abstract

Fe-Ni thin films were co-sputter deposited from Ni and Fe metallic targets on different substrates. The evolution of the coating composition as a function of the discharge current dissipated on each target is studied and the targeted composition for Ni3Fe is obtained by fixing the discharge current applied on Fe target at 0.5 A and adjusting the discharge current applied on Ni target at 0.45 A. The as deposited coating with convenient composition presents a disordered solid solution FCC structure. Finally, the magnetic properties of the films are investigated as a function of their thickness. We have observed that coercivity decreases slightly and magnetic moment increases which increasing film thickness.


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Le document en format XML

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Fe solid solution thin films deposited by DC-magnetron sputtering</title>
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<div type="abstract" xml:lang="en">Fe-Ni thin films were co-sputter deposited from Ni and Fe metallic targets on different substrates. The evolution of the coating composition as a function of the discharge current dissipated on each target is studied and the targeted composition for Ni
<sub>3</sub>
Fe is obtained by fixing the discharge current applied on Fe target at 0.5 A and adjusting the discharge current applied on Ni target at 0.45 A. The as deposited coating with convenient composition presents a disordered solid solution FCC structure. Finally, the magnetic properties of the films are investigated as a function of their thickness. We have observed that coercivity decreases slightly and magnetic moment increases which increasing film thickness.</div>
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