DocumentCode :
3560263
Title :
How to Retrieve More Information on Magnetic Films From Microwave Permeability Measurements
Author :
Acher, Olivier ; Dubuget, Vincent ; Dubourg, S?©bastien
Author_Institution :
CEA Le Ripault, Monts
Volume :
44
Issue :
11
fYear :
2008
Firstpage :
2842
Lastpage :
2845
Abstract :
The microwave permeability of soft thin films is a useful quantity for the design of fast, high-frequency systems. A number of setups now provide reliable permeability measurements. It is quite common to determine the saturation magnetization from the permeability measurements by using either a generalization of Snoek´s law, or a curve fit with the Landau-Lifschitz model. This is a good way of verifying the consistency of the microwave measurements, since the saturation magnetization can be obtained by other means. However, in certain cases the permeability spectra reveal some features that cannot be accounted for by the uniform Landau-Lifschitz model, due to skin effect, heterogeneities, spinwave excitations, etc. The present article demonstrates that a better way to obtain reliable saturation magnetization values from permeability spectra is to use quantities based on the integral of the imaginary part of the measured permeability. Such quantities can also be used to determine the standard deviation of the magnetization orientation within the sample. These theoretical results are illustrated on CoZr thin films of various thicknesses, as well as on samples with a large built-in dispersion of the magnetization orientation.
Keywords :
amorphous magnetic materials; cobalt alloys; information retrieval; magnetic permeability; magnetic thin films; magnetisation; microwave materials; skin effect; soft magnetic materials; zirconium alloys; CoZr; Landau-Lifschitz model; Snoeks law; high-frequency systems; magnetic anisotropy; microwave permeability measurements; saturation magnetization; skin effect; soft amorphous magnetic thin films; spinwave excitations; Anisotropy; permeability; sum rule;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2001494
Filename :
4717621
Link To Document :
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