DocumentCode
970127
Title
Effect of Variable Biquadratic Exchange Coupling on the Magnetic Hysteresis of Uniaxial Antiferromagnetic Co/Ru/Co Films
Author
Zhao, Zhiya ; Papusoi, Cristian ; Mani, Prakash ; Misra, A. ; Visscher, P.B. ; Fujiwara, H. ; Gubbiotti, G. ; Tacchi, S. ; Mankey, G.J.
Author_Institution
Duke Univ., Durham
Volume
43
Issue
12
fYear
2007
Firstpage
4056
Lastpage
4059
Abstract
We investigated biquadratic exchange coupling strength in sputtered uniaxial antiferromagnetic Co/Ru/Co trilayers, which can be tuned by applying a magnetic field perpendicular to the sample surface during deposition. The perpendicular field induces a columnar grain structure that results in a perpendicular magnetic anisotropy for single Co layers. The perpendicular magnetic anisotropy is detected by combined magnetization and Brillouin light scattering measurements. In trilayers, increasing the perpendicular field during deposition results in a monotonic increase of the biquadratic exchange coupling strength, so these samples provide an experimental realization of the effect of variable biquadratic coupling strength on magnetic hysteresis behavior. The hard-axis remanence is a direct measure of biquadratic exchange coupling strength, which we demonstrated both by experiment and by a Stoner-Wohlfarth model that includes the relevant magnetic parameters.
Keywords
Brillouin spectra; antiferromagnetic materials; cobalt; exchange interactions (electron); magnetic hysteresis; magnetic multilayers; magnetic thin films; perpendicular magnetic anisotropy; remanence; ruthenium; Brillouin light scattering; Co-Ru; Stoner-Wohlfarth model; columnar grain structure; hard-axis remanence; magnetic field; magnetic hysteresis; magnetization; trilayers; uniaxial antiferromagnetic films; variable biquadratic exchange coupling; Biquadratic coupling; exchange coupling; magnetic anisotropy; magnetic materials;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2007.906891
Filename
4380287
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