Effect of alloy formation processes in the Co-Cu system on the magnetic and magnetoresistance properties of multilayer Co/Cu films with ultrathin Co layers prepared by DC magnetron sputtering

被引:0
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作者
D. L. Khalyapin
P. D. Kim
J. Kim
I. A. Turpanov
A. Ya. Beten’kova
G. V. Bondarenko
T. N. Isaeva
I. Kim
机构
[1] Siberian Federal University,Kirensky Institute of Physics, Siberian Branch
[2] Russian Academy of Sciences,Department of Metallurgical and Material Science
[3] Hanyang University,EMD Laboratory, Central R&D Institute
[4] Samsung Electro-Mechanics Co.,undefined
[5] LTD,undefined
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Magnetic Phase Transition; Magnetic Layer; Effective Thickness; Paramagnetic Phase; Langevin Function;
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摘要
This paper reports on a study of multilayer Co/Cu films with an effective thickness of the Co layer of ∼3.5 Å, which were prepared by magnetron sputtering. The samples prepared have been found to have a metastable multiphase structure. An analysis of the data obtained by structural and, primarily, by magnetic methods has revealed that the main phases are the Co/Cu supersaturated solid solution (alloy) with a Co concentration of about 30 at %, the superparamagnetic phase, and the paramagnetic phase, which is accounted for by the presence of small (a few atoms at most) Co clusters embedded in the Cu matrix. A clearly pronounced maximum in the temperature dependences of the low-field magnetoresistance has been found, which is associated with the temperature of the magnetic phase transition of the supersaturated Co-Cu alloy.
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页码:1787 / 1796
页数:9
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