DocumentCode :
3602887
Title :
Carbon Capping Layer Effect on Magnetic Properties and Microstructure of FePt/MoC/CrRu Films
Author :
Tsai, J.L. ; Fu, S.C. ; Tseng, Y.T. ; Li, C.R. ; Hu, K.C. ; Tzeng, J.L.
Author_Institution :
Dept. of Mater. Sci. & Eng., Nat. Chung Hsing Univ., Taichung, Taiwan
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
A capping C layer with various thicknesses was sputtered on FePt/MoC/CrRu/glass and postannealed from 190 °C to 365 °C. The optimal magnetic property was obtained at 2 nm-thick C layer annealed at 268 °C and used to discuss an FePt thickness effect. The FePt films with a thickness of 4-10 nm were deposited on MoC/CrRu at 425 °C using magnetron sputtering. The MoC intermediate layer was epitaxially grown on the (200) textured CrRu seed layer, and the FePt film was prepared on the (200) textured MoC at 425 °C. The FePt film shows strong (001) texture, and the out-of-plane coercivity of 7.5 kOe has been demonstrated in 10 nm-thick FePt film. After capping a 2 nm-thick C layer and postannealed at 268 °C, the out-of-plane coercivity was increased to 10 kOe compared with FePt without C capping. From microstructure, the FePt grains were distributed in- or between-islandlike structure and further separated by excess carbon from a capping carbon layer and an MoC intermediate layer.
Keywords :
annealing; chromium alloys; coercive force; iron alloys; magnetic thin films; molybdenum compounds; platinum alloys; ruthenium alloys; sputter deposition; (200) textured seed layer; FePt-MoC-CrRu; carbon capping layer effect; magnetic properties; magnetron sputtering; microstructural properties; out-of-plane coercivity; postannealing; size 2 nm; size 4 nm to 10 nm; temperature 190 degC to 365 degC; temperature 425 degC; thin films; Annealing; Carbon; Coercive force; Films; Rough surfaces; Surface morphology; Surface roughness; Coercivity; coercivity; microstructure; texture;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2442615
Filename :
7119586
Link To Document :
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