R. Imada et al., STRUCTURE AND GIANT MAGNETORESISTANCE EFFECT OF FE CU AND FECONI/CU MULTILAYERS/, Journal of applied physics, 81(8), 1997, pp. 5191-5193
We have studied the giant magnetoresistance (GMR) effect and the film
structure of Fe/Cu and FeCoNi/Cu multilayers (MLs), where the FeCoNi a
lloy is in the composition range of the bcc phase. Both MLs show the o
scillation of MR ratio similar to each other as a function of the Cu l
ayer thickness. The phase of oscillation is much different from those
in Co/Cu and fcc-FeCoNi/Cu MLs. The maximum MR ratios of 6% and 40% we
re obtained at 77 K, respectively, for (Fe 1.5 nm/Cu 1.4 nm)(20) and (
Fe56CO30N14 1.5 nm/Cu 1.4 nm)(20) MLs. The EXAFS of the Cu K edge as w
ell as the XRD pattern indicates that the structure of the Cu layers c
hanges from bcc-like to fee phase as their thickness increases. At the
Cu thickness of 1.5 nm, the Cu layers, in both MLs, are highly disord
ered and seem to have a bet structure. (C) 1997 American Institute of
Physics.