DocumentCode :
1450386
Title :
Formation of Ordered FePt(001) Texture With Reduced Diffusion Length
Author :
Wang, Shien-Wen ; Sun, A.C. ; Yuan, Fu-Te ; Hsu, Jen-Hwa ; Kuo, Po-Cheng
Author_Institution :
Dept. of Mater. Sci. & Eng., Nat. Taiwan Univ., Taipei, Taiwan
Volume :
45
Issue :
10
fYear :
2009
Firstpage :
3580
Lastpage :
3583
Abstract :
Samples with glass/CrRu(90 nm)/Pt(2 nm)/FePt(20 nm) film structure were sequentially planetary-sputtered at an in situ heating temperature of 350degC to investigate the effect of sputtering rate on the ordering of L10-FePt (001) films. The degree of chemical ordering was enhanced by lowering the sputtering rate of the FePt layer. The slow sputtering process also promoted the formation of the (001) preferred orientation by improving epitaxial growth, because the thickness of the Fe and Pt layers in each revolution become smaller as the sputtering rate was reduced. Therefore, the diffusion lengths of the Fe and Pt atoms required for migration into the L10 lattice sites became shorter. The sputter parameters can be optimized to form ordered FePt (001) films with a high magnetic squareness ratio ( 0.8) and large coercivity at 300degC, which is 50degC lower than in previous reports. The results herein provide useful information on the fabrication of FePt films with perpendicular anisotropy at low temperatures in media use.
Keywords :
chromium alloys; coercive force; diffusion; glass; iron alloys; magnetic anisotropy; magnetic epitaxial layers; platinum; platinum alloys; ruthenium alloys; sputter deposition; texture; FePt; FePt (001) film structure; coercivity; diffusion length; epitaxial growth; film thickness; glass; magnetic squareness ratio; ordered FePt(001) texture; perpendicular magnetic anisotropy; preferred orientation; sputtering process; temperature 300 C; temperature 350 C; temperature 50 C; Diffusion length; FePt; ordering; perpendicular anisotropy;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2009.2023861
Filename :
5257189
Link To Document :
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