From demagnetizing to magnetizing interactions in CoFe–AgCu granular films
Open Access
- 15 April 1997
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 81 (8) , 4593-4595
- https://doi.org/10.1063/1.365173
Abstract
CoFe-AgCu granular films of compositions ranging from 0.17-0.44 ferromagnetic atomic concentration were prepared by rf sputtering. The microstructure and the transport and magnetic properties suggested that this family of samples can be classified into two groups with a crossover concentration at about 32 at. %. The experimental results for samples Co34Fe8Ag54Cu4 and Co18Fe8Ag70Cu4, which are representative of both different behaviors, are discussed. For the as-prepared sample with higher CoFe content, an uncompensated out-of-plane antiferromagneticlike microstructure with dominant demagnetizing interactions was observed. The particle growth through the annealing led to large in-plane ferromagneticlike clusters with dominant magnetizing interactions. The thermal dependence of the remanence-to-saturation ratio of the as-prepared and annealed samples indicated the existence of a high degree of magnetic correlations leading to a very low magnetoresistivity: In none of the cases was a Stoner¿Wohlfarth behavior observed. On the contrary, for the sample with lower CoFe content, the magnetoresistivity change was much higher, and the remanence followed the expected behavior, since magnetic correlations were strongly reduced through dilutionThis publication has 12 references indexed in Scilit:
- Giant magnetoresistance in sputtered (Co70Fe30)xAg1-xheterogeneous alloysJournal of Physics: Condensed Matter, 1994
- Giant magnetoresistance in Ag1−xNix−yFey heterogeneous alloy filmsJournal of Applied Physics, 1994
- Magnetoresistance of co-sputtered Ag-Co-Ni alloy thin filmsJournal of Magnetism and Magnetic Materials, 1993
- Giant magnetoresistance studies in (Fe,Co)-Ag filmsJournal of Applied Physics, 1993
- Development of coercivity in Sm2Fe17(N,C)x magnets by mechanical alloying, solid–gas reaction, and pressure-assisted zinc bondingJournal of Applied Physics, 1993
- Giant magnetoresistance in heterogeneous AgCo alloy filmsApplied Physics Letters, 1992
- Magnetic properties and giant magnetoresistance of granular permalloy in silverApplied Physics Letters, 1992
- Giant magnetoresistance in nonmultilayer magnetic systemsPhysical Review Letters, 1992
- Giant magnetoresistance in heterogeneous Cu-Co alloysPhysical Review Letters, 1992
- Granular magnetic solids (invited)Journal of Applied Physics, 1991