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The European Physical Journal BISSN: 1434-6028 (printed version) Abstract Volume 4 Issue 4 (1998) pp 413-420 The temperature dependence of the perpendicular giant magnetoresistance in Co/Cu multilayered nanowires
L. Piraux (1) (a), S. Dubois (1), A. Fert (2), L. Belliard (3)
(1) Unité de Physico-Chimie et de Physique des Matériaux, Université Catholique de Louvain, 1348 Louvain-la-Neuve, Belgium Received: 25 January 1998 / Accepted: 6 May 1998 Abstract: A theory, based on earlier work by Valet and Fert, is first presented to describe the influence of temperature on the perpendicular giant magnetoresistance (GMR) in multilayers. Then we present GMR measurements performed at T=77 K and at room temperature on Co/Cu multilayered nanowires with layer thicknesses ranging from a few nm to 1 µm. We use our model to obtain a good quantitative fit to the experimental results in both the short spin diffusion length limit and out of this limit. We discuss the temperature dependence of the bulk parameters, the scattering spin asymmetry coefficient and spin diffusion length in the Co layers.
PACS. 72.15.Gd Galvanomagnetic and other magnetotransport effects - 75.70.-i Magnetic films and multilayers
(a) email: piraux@pcpm.ucl.ac.be Article in PDF-Format (316 KB) Online publication: August 27, 1998 |