Anisotropy-Graded L10 FePt(001) Magnetic Films Obtained by Graded Working Pressures

被引:0
|
作者
Lin, Yi-Hung [1 ,2 ]
Hsu, Jen-Hwa [1 ]
Saravanan, P. [1 ,3 ]
Sun, An-Cheng [4 ]
Kuo, Po-Cheng [2 ]
机构
[1] Natl Taiwan Univ, Dept Phys, Taipei 106, Taiwan
[2] Natl Taiwan Univ, Dept Mat Sci & Engn, Taipei 106, Taiwan
[3] Def Met Res Lab, Hyderabad 500058, Andhra Pradesh, India
[4] Yuan Ze Univ, Dept Chem Engn & Mat Sci, Zhongli 32003, Taiwan
关键词
Anisotropy; magnetic films and multilayers; magnetic measurements; metals and alloys; X-ray diffraction; MEDIA;
D O I
10.1109/TMAG.2015.2435054
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We herein investigate the performance of L1(0)-FePt(001) films consisting of magnetically anisotropic-graded FePt layers grown by gradient working pressure (P-w). The graded structures typically consist of 5 nm thick FePt hard layer followed by five sequential layers of 1 nm thick graded-FePt layers deposited with P-w of 30, 20, 10, 7, and 3 mtorr, respectively. The structural and magnetic properties of P-w-graded-FePt layers thus fabricated on glass substrates are compared with that of those grown at different deposition temperatures, T-d of 300 degrees C, 350 degrees C, 400 degrees C, and 450 degrees C. The FePt(P-w)-graded films exhibited a very high (001)-texture, island-like morphology, and strong perpendicular magnetic anisotropy and these performances are found to be consistent with that of the L1(0)-FePt(001) hard layer. For T-d < 400 degrees C, the FePt(P-w)-graded films not only showed remarkable declining trend for out-of-plane coercivity (H-c perpendicular to) but also demonstrated single-phase magnetization reversal-suggesting the existence of strong exchange coupling between the hard and the graded layers. In contrast, at higher T-d (>= 400 degrees C) ledge-or maze-type morphology with evidence of in-plane magnetic component is observed. Further, higher T-d leads to the occurrence of intensive interlayer diffusion across the graded layers, which resulted in declining exchange-coupling behavior. The cross-sectional transmission electron microscopy images revealed epitaxial growth for the P-w-graded and the L1(0)-FePt layers grown using MgO under layer. The results of this paper demonstrate the feasibility of obtaining magnetic gradation in the FePt(w)-graded films, satisfying the requirements of future magnetic recording with ultrahigh density.
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页数:4
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