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   <dc:title>Magnetotransport properties of NiFe-Ag granular alloys: origin of the thermal behavior</dc:title>
   <dc:creator>Badia Pascual, Ferran</dc:creator>
   <dc:creator>Batlle, X.</dc:creator>
   <dc:creator>Labarta, A.</dc:creator>
   <dc:creator>Watson, M. L.</dc:creator>
   <dc:creator>Johnston, A. B.</dc:creator>
   <dc:creator>Chapman, J. N.</dc:creator>
   <dcterms:abstract>The effect of the temperature and magnetic field on the giant magnetoresistivity ~GMR! of two&#xd;
FeNi–Ag granular alloys of composition Fe11.4Ni6.4Ag82.2 and Fe7.6Ni16.4Ag76.0 is discussed. Both&#xd;
samples were prepared by rf magnetron sputtering. Parts of them were rapidly annealed at 600, 650,&#xd;
and 750 °C. All samples displayed giant magnetoresistivity which decays from its maximum value&#xd;
with a Tm behavior, with m'0.8– 0.9, suggesting that the decrease in the maximum&#xd;
magnetoresistivity is due to the reduction in the particle magnetization associated with the spin wave&#xd;
excitation, which is a different mechanism to the electron-magnon interaction responsible for the&#xd;
T dependence of GMR in magnetic multilayers. Magnetoresistivity r M decreases with temperature&#xd;
sharing essentially the same temperature decrease as the square of the macroscopic magnetization&#xd;
M in the whole magnetic field range studied, which is due to the reduction in the particle&#xd;
magnetization and to superparamagnetic effects. The effect of the width of the particle size&#xd;
distribution and interparticle interactions on the linear relation r M vs M2 are discussed. Care should&#xd;
be taken when representing r M /r(T,H50) vs (M/Ms)2 because the strong temperature-dependent&#xd;
slope shown in these plots is mainly due to the temperature dependence of both the resistivity&#xd;
r(T,H50) and Ms , and it is not an intrinsic T dependence of GMR in granular alloys.&#xd;
Experimental results suggest that in granular materials, magnetoresistivity is dominated by magnetic&#xd;
moments at the surface of the particles, which also play a very important role in the demagnetization&#xd;
processes, and small magnetic particles.</dcterms:abstract>
   <dcterms:abstract>Financial support of both the Spanish CICYT through the MAT94-1024-CO2-02 Project and the Catalan CIRIT through the GRQ1012 Project (1993–96) are largely recognized.</dcterms:abstract>
   <dcterms:dateAccepted>2024-12-05T21:50:53Z</dcterms:dateAccepted>
   <dcterms:available>2024-12-05T21:50:53Z</dcterms:available>
   <dcterms:created>2024-12-05T21:50:53Z</dcterms:created>
   <dcterms:issued>2016-07-04T10:37:34Z</dcterms:issued>
   <dcterms:issued>2016-07-04T10:37:34Z</dcterms:issued>
   <dcterms:issued>1997</dcterms:issued>
   <dc:type>article</dc:type>
   <dc:type>publishedVersion</dc:type>
   <dc:identifier>http://hdl.handle.net/10459.1/57342</dc:identifier>
   <dc:relation>Reproducció del document publicat a https://doi.org/10.1063/1.365598</dc:relation>
   <dc:relation>Journal of Applied Physics, 1997, vol. 82, núm. 2, p. 677-687</dc:relation>
   <dc:rights>(c)  American Institute of Physics, 1997</dc:rights>
   <dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
   <dc:publisher>American Institute of Physics</dc:publisher>
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