Serveur d'exploration sur le nickel au Maghreb

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Magnetic properties and interlayer coupling of sputtered Ni/V multilayers

Identifieur interne : 000808 ( Main/Exploration ); précédent : 000807; suivant : 000809

Magnetic properties and interlayer coupling of sputtered Ni/V multilayers

Auteurs : K. Benkirane [Maroc] ; R. Elkabil [Maroc] ; M. Lassri [Maroc] ; M. Abid [Maroc] ; H. Lassri [Maroc] ; A. Hamdoun [Maroc] ; R. Krishnan [France]

Source :

RBID : Pascal:05-0163726

Descripteurs français

English descriptors

Abstract

The magnetic properties of sputtered Ni/V multilayers have been studied in a vibrating sample magnetometer, torque magnetometer and by ferromagnetic resonance (FMR). The magnetization decreases with decreasing Ni layer thickness, which is an indication of the structural imperfections at interface. The interface contribution to the magnetic anisotropy is practically negligible. The spin-waves resonance modes were observed for perpendicular geometry, which implied that spin waves were sustained by the whole film and propagated through V layers in some Ni/V multilayers. The relation of the resonance field Hn with the mode number n obeys the so-called n2 law and the interlayer exchange constants were determined.


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Le document en format XML

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<term>Magnetic anisotropy</term>
<term>Magnetic properties</term>
<term>Magnetization</term>
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<term>Nickel</term>
<term>Spin wave resonance</term>
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<term>Propriété magnétique</term>
<term>Interaction échange</term>
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<term>Anisotropie magnétique</term>
<term>Résonance onde spin</term>
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<div type="abstract" xml:lang="en">The magnetic properties of sputtered Ni/V multilayers have been studied in a vibrating sample magnetometer, torque magnetometer and by ferromagnetic resonance (FMR). The magnetization decreases with decreasing Ni layer thickness, which is an indication of the structural imperfections at interface. The interface contribution to the magnetic anisotropy is practically negligible. The spin-waves resonance modes were observed for perpendicular geometry, which implied that spin waves were sustained by the whole film and propagated through V layers in some Ni/V multilayers. The relation of the resonance field H
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with the mode number n obeys the so-called n
<sup>2</sup>
law and the interlayer exchange constants were determined.</div>
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