Magnetic properties of Fe/Co, Fe/CoFe, and (Fe/Co)/SiO2 multilayer films
- 15 April 1989
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 65 (8) , 3151-3156
- https://doi.org/10.1063/1.342690
Abstract
This paper reports on the systematical investigation into the magnetic properties of Fe/Co, Fe/CoFe, and (Fe/Co)/SiO2 multilayer films. Magnetostriction in Fe/Co and Fe/CoFe films can be controlled by changing the thicknesses of the layers. The Fe/Co film (10/0.5 nm) shows saturation magnetization of more than 2 T and hard‐axis coercivity of 1.5 Oe for magnetostriction near zero. The hard‐axis coercivity is decreased to 0.8 Oe by 300 °C annealing. A magnetic domain structure suitable for a thin‐film head is also established for this film. Additionally, a hard‐axis coercivity of less than 1 Oe, a relative permeability of 2000, and a saturation magnetization of approximately 2 T are achieved in (Fe/Co)/SiO2 film [(15/0.5)/5 nm] with no annealing. A controlled domain structure consisting of extended 180° walls is observed in this film.This publication has 10 references indexed in Scilit:
- Magnetic properties of multilayer films consisting of Fe and nonmagnetic layersJournal of Applied Physics, 1989
- Magnetic properties of ion-beam-sputtered Fe/Co and Fe/CoFe multilayer filmsApplied Physics Letters, 1988
- Properties of ion-beam-sputtered Ni/Fe artificial lattice filmJournal of Applied Physics, 1988
- Well-defined uniaxial anisotropy in iron film formed by ion beam sputteringJournal of Applied Physics, 1987
- Analysis of magnetic domains in a film headIEEE Transactions on Magnetics, 1986
- Deposition of rust proof Iron thin films with soft magnetic properties by dual ion beam sputteringIEEE Transactions on Magnetics, 1985
- Synthesis of iron-nitride films by means of ion beam depositionIEEE Transactions on Magnetics, 1984
- Quantitative Calculation of the Magnetic Ripple of Uniaxial Thin Permalloy FilmsJournal of Applied Physics, 1964
- Very Low Coercive Force in Nickel–iron FilmsNature, 1962
- Les surstructures d'orientation des alliages Fe-CoJournal de Physique et le Radium, 1959