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Giant magnetoresistive in soft ferromagnetic multilayers

Physical review. B, Condensed matter · 1991 · Vol. 43(1) · pp. 1297–1300
B. DiényV. S. SperiosuS. ParkinB. A. GurneyDennis R. WilhoitD. Mauri

Abstract

We show that the in-plane magnetoresistance of sandwiches of uncoupled ferromagnetic (${\mathrm{Ni}}_{81}$${\mathrm{Fe}}_{19}$,${\mathrm{Ni}}_{80}$${\mathrm{Co}}_{20}$,Ni) layers separated by ultrathin nonmagnetic metallic (Cu,Ag,Au) layers is strongly increased when the magnetizations of the two ferromagnetic layers are aligned antiparallel. Using NiFe layers, we report a relative change of resistance of 5.0% in 10 Oe at room temperature. The comparison between different ferromagnetic materials (alloys or pure elements) leads us to emphasize the role of bulk rather than interfacial spin-dependent scattering in these structures, in contrast to Fe/Cr multilayers.

Magnetic properties of thin filmsHeusler alloys: electronic and magnetic propertiesMagnetic Properties and ApplicationsFerromagnetismCondensed matter physicsMagnetoresistanceMaterials scienceAntiparallel (mathematics)Giant magnetoresistanceScatteringMetalSpin (aerodynamics)Physics
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References
Giant Magnetoresistance of (001)Fe/(001)Cr Magnetic Superlattices
Physical Review Letters · 1988 · 9,162 citations
Tunneling between ferromagnetic films
Physics Letters A · 1975 · 3,854 citations
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