DocumentCode :
1077182
Title :
Noise suppression effect of nanogranular Co based magnetic thin films at gigahertz frequency
Author :
Ohnuma, Shigehiro ; Nagura, Hideaki ; Fujimori, Hiroyasu ; Masumoto, Tsuyoshi
Author_Institution :
Res. Inst. for Electr. & Magnetic Mater., Sendai, Japan
Volume :
40
Issue :
4
fYear :
2004
fDate :
7/1/2004 12:00:00 AM
Firstpage :
2712
Lastpage :
2715
Abstract :
Noise suppression effect of Co-Pd-Al-O nanogranular thin films, which have considerably high permeability up to gigahertz range, was investigated. The films with large variety of electrical resistivity (ρ) from 102 to 107 μΩ·cm were prepared by reactive sputtering method and by changing both target compositions and deposition conditions. The films with ρ less than 103 μΩ·cm are ferromagnetic, and the films with ρ more than 106 μΩ·cm are superparamagnetic. A microstrip line with granular films placed on its top was used to evaluate conduction noise suppression. The result of transmission and reflection measurements reveals that these nanogranular soft magnetic Co-Pd-Al-O thin films have high potential for noise suppressors in the gigahertz range. In particular, the broad maximum of power loss (Ploss/Pin) about 0.6 at 6 GHz has been obtained in Co-Pd-Al-O films with ρ around 104 μΩ·cm.
Keywords :
aluminium compounds; cobalt compounds; electrical resistivity; magnetic anisotropy; magnetic noise; magnetic thin films; noise abatement; palladium compounds; soft magnetic materials; sputtering; Co based magnetic thin films; Co-Pd-Al-O; Co-Pd-Al-O nanogranular thin films; conduction noise suppression; deposition conditions; electrical resistivity; ferromagnetic films; gigahertz frequency; granular films; magnetic anisotropy; microstrip line; noise suppression materials; noise suppressors; permeability; reactive sputtering; reflection measurement; soft magnetic materials; soft magnetic thin films; superparamagnetic films; target compositions; transmission measurement; Acoustic reflection; Conductive films; Electric resistance; Frequency; Magnetic films; Magnetic noise; Microstrip; Optical films; Permeability; Sputtering; Co based films; gigahertz frequency; granular structure; large electrical resistivity; large magnetic anisotropy; noise suppression materials; soft magnetic materials;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.834240
Filename :
1325618
Link To Document :
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