Mismatch-induced recrystallization of giant magneto-resistance multilayer systems

Vovk V, Schmitz G, Hütten A (2006)
APPLIED PHYSICS LETTERS 88(2).

Journal Article | Published | English

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Abstract
In Py/Cu (Py=Ni81Fe19), Py/Cu/Co/Cu and also in binary Cu/Co layer systems, a recrystallization is induced by annealing at about 400 degrees C, which leads to a transformation of the crystallographic orientation from a [111] to a [200] texture. In this paper it is demonstrated that the observed recrystallization is driven by the elastic energy induced by the lattice mismatch between the thin film materials. The NixFe1-x/Cu-system is chosen for the study, since the lattice parameter of the NixFe1-x alloy may be suitably controlled by its iron content. Indeed, an increase of the iron content has a dramatic influence on the recrystallization probability.
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Vovk V, Schmitz G, Hütten A. Mismatch-induced recrystallization of giant magneto-resistance multilayer systems. APPLIED PHYSICS LETTERS. 2006;88(2).
Vovk, V., Schmitz, G., & Hütten, A. (2006). Mismatch-induced recrystallization of giant magneto-resistance multilayer systems. APPLIED PHYSICS LETTERS, 88(2).
Vovk, V., Schmitz, G., and Hütten, A. (2006). Mismatch-induced recrystallization of giant magneto-resistance multilayer systems. APPLIED PHYSICS LETTERS 88.
Vovk, V., Schmitz, G., & Hütten, A., 2006. Mismatch-induced recrystallization of giant magneto-resistance multilayer systems. APPLIED PHYSICS LETTERS, 88(2).
V. Vovk, G. Schmitz, and A. Hütten, “Mismatch-induced recrystallization of giant magneto-resistance multilayer systems”, APPLIED PHYSICS LETTERS, vol. 88, 2006.
Vovk, V., Schmitz, G., Hütten, A.: Mismatch-induced recrystallization of giant magneto-resistance multilayer systems. APPLIED PHYSICS LETTERS. 88, (2006).
Vovk, V, Schmitz, G, and Hütten, Andreas. “Mismatch-induced recrystallization of giant magneto-resistance multilayer systems”. APPLIED PHYSICS LETTERS 88.2 (2006).
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