Torque magnetometry on thin magnetite films at low temperatures

Torque magnetometry was used to investigate the magnetic anisotropy of epitaxial Fe 3O 4 films of thicknesses 420 and 40 nm grown by pulsed laser deposition on (0 0 1) MgO substrates. Torque measurements at 130 K in the (1 1 ̄ 0) plane allow us to evaluate the influence of shape and stress anisotrop...

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Veröffentlicht in:Journal of magnetism and magnetic materials 2000-03, Vol.211 (1), p.271-277
Hauptverfasser: Höhne, R, Kleint, C.A, Pan, A.V, Krause, M.K, Ziese, M, Esquinazi, P
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Sprache:eng
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Zusammenfassung:Torque magnetometry was used to investigate the magnetic anisotropy of epitaxial Fe 3O 4 films of thicknesses 420 and 40 nm grown by pulsed laser deposition on (0 0 1) MgO substrates. Torque measurements at 130 K in the (1 1 ̄ 0) plane allow us to evaluate the influence of shape and stress anisotropy. As in bulk material field-cooled measurements performed at T=5 K show that the magnetic anisotropy is strongly influenced by the direction of the magnetic field applied above the Verwey temperature. In contrast to bulk magnetite we find smaller effective contributions of the magneto-crystalline anisotropy. In zero-field-cooled films our measurements suggest a tendency to a preferential out-of-plane orientation of the magnetic easy axis, but the dominating shape anisotropy favours an in-plane orientation of the magnetization.
ISSN:0304-8853
DOI:10.1016/S0304-8853(99)00746-5