DocumentCode :
858954
Title :
Patterned Media Based on Soft/Hard Composite Nanowire Array of Ni/CoPt
Author :
Gapin, Andrew I. ; Ye, Xiang-Rong ; Chen, Li-Han ; Hong, Daehoon ; Jin, Sungho
Author_Institution :
California Univ., San Diego, La Jolla, CA
Volume :
43
Issue :
6
fYear :
2007
fDate :
6/1/2007 12:00:00 AM
Firstpage :
2151
Lastpage :
2153
Abstract :
One of the drawbacks of using high-coercivity materials for magnetic data storage is the need for large write head fields for data writing. In attempts to solve this problem, we have fabricated an array of CoPt/Ni composite nanowires using anodized aluminum oxide (AAO) templates, electrochemical deposition, and an annealing treatment. The array consists of vertically aligned, ~25-nm diameter, composite nanowires with ~80-nm-long, magnetically soft Ni at the base and ~20-nm-long, magnetically hard, L10 phase CoPt at the top. To see the influence of the composite structure on the magnetic properties, separate samples with Ni and CoPt nanowires of the same height were prepared and annealed using identical conditions. M-H loops along the nanowire axis show that the Ni nanowires exhibit relatively soft magnetic coercivity of 242 Oe, while the CoPt nanowires show a very high coercivity of 10.97 kOe. The composite CoPt/Ni nanowires exhibit an intermediate coercivity of 1.96 kOe. The results show a reduction in coercivity versus the CoPt nanowires, potentially leading to easier data writing
Keywords :
annealing; cobalt alloys; coercive force; composite materials; electrodeposition; interface magnetism; magnetic heads; magnetic hysteresis; magnetic recording; nanowires; nickel; permanent magnets; platinum alloys; soft magnetic materials; Al2O3; Ni-CoPt; annealing treatment; anodized aluminum oxide templates; data writing; electrochemical deposition; high-coercivity materials; magnetic data storage; patterned media; soft magnetic coercivity; soft-hard composite nanowire array; write head fields; Aluminum oxide; Annealing; Coercive force; Magnetic heads; Magnetic materials; Magnetic separation; Memory; Phased arrays; Soft magnetic materials; Writing; Magnetic materials; magnetic recording; nanostructured materials;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2007.893121
Filename :
4202727
Link To Document :
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