The magnetic properties of bilayers of bcc Fe(001) separated by bcc Cu(001) films of variable thickness have been investigated by means of Brillouin light scattering. For copper thicknesses less than 9 monolayers (ML) the coupling between the iron films was found to be ferromagnetic; for thicknesses between 9 and 12 ML the coupling was found to be antiferromagnetic. The data are compared with the results of a model calculation that assumes a uniform static magnetization across each film: The magnetizations of the two films, MA and MB, are assumed to be coupled by an interaction energy of the form JMA{·}MB/({}MA{}{}MB{}), where J is a surface energy. For small applied fields and for antiferromagnetic coupling the magnetizations in the films need not be parallel. The magnetic-field dependence of frequencies calculated using this model display features that are similar to the observations.
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Cochran et al. (1990) studied this question.
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