DocumentCode :
3560137
Title :
Effect of MgO Addition on Structural and Magnetic Properties of (001)-Textured FePt Thin Films
Author :
An-Cheng Sun ; Tsai, Y.C. ; Yuan, Fu-Te ; Hsu, Jen-Hwa ; Kuo, P.C.
Author_Institution :
Dept. of Phys., Nat. Taiwan Univ., Taipei
Volume :
44
Issue :
11
fYear :
2008
Firstpage :
3531
Lastpage :
3534
Abstract :
This paper explores (FePt)100 - x-(MgO)x films with x = 0 - 6.13, deposited on an MgO underlayer at elevated temperatures by sputtering. The films exhibit good (001) texture and perpendicular anisotropy. The effects of adding MgO are summarized as follows: (1) the (001) alignment is degraded, increasing the in-plane squareness ratio (S// ); (2) a linear dilution of magnetization at an applied field of 6 Tesla was observed; and (3) a critical MgO content of 1 vol. % was found for chemical ordering, microstructure, and anisotropic field (H k). Below this critical content, the ordering of FePt and its microstructure remain similar to those with x = 0 but with a markedly enhanced H k. As x exceeded 1 vol. %, the ordering declined linearly with increasing MgO content. Additionally, a well-defined granular structure was formed and H k was reduced. The decrease in the lattice constant along the c-axis as x increased between 0 and 1 vol. % reveals that the enhancement of H k is related to the relaxation of the residual strain/stress that originates from the ordering transformation of FePt. Adding the proper amount of MgO improved the magnetic properties of (001)-textured FePt.
Keywords :
granular structure; internal stresses; iron alloys; lattice constants; magnesium compounds; magnetic anisotropy; magnetic hysteresis; magnetic thin films; platinum alloys; solid-state phase transformations; texture; (001) texture; (FePt)100-x(MgO)x; chemical ordering; granular structure; in-plane squareness ratio; lattice constant; magnetization linear dilution; microstructure; ordering transformation; perpendicular anisotropy; residual strain; residual stress; sputtering; thin films; Ll $_{0}$FePt; MgO addition; MgO underlayer; perpendicular anisotropy;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2001607
Filename :
4717476
Link To Document :
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