Abstract
The peculiarities of the propagation of the magnetostatic waves (MSW) in ferrimagnetic materials are of great interest since the MSW are the eigenmodes of the ferrite plates and films used in electronic devices [1,2]. Recently, special attention was also given to the MSW in complex systems consisting of layers of different materials [2–4]. These multilayered structures are of particular interest since they allow to form the MSW with desirable characteristics. Thus it is obvious that a detailed investigation of the MSW properties in the materials with different parameters is important. The influence of magnetization, anisotropy and film inhomogeneity as well as the effect of the dissipation on the MSW spectra has been studied previously (see [2] and references therein). These works have been concentrated on the influence of each of the above-mentioned parameters separately. However, their studying in complex approaches more closely to the reality since it assumes also the interaction of the various effects, which modifies the MSW propagation conditions.
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© 1998 Springer Science+Business Media Dordrecht
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Popova, E.V., Zavislyak, I.V. (1998). Volume MSW in the Inhomogeneous Multilayered Anisotropic Ferrite Films. In: Bar’yakthar, V.G., Wigen, P.E., Lesnik, N.A. (eds) Frontiers in Magnetism of Reduced Dimension Systems. NATO ASI Series, vol 49. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-5004-0_32
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DOI: https://doi.org/10.1007/978-94-011-5004-0_32
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