DocumentCode :
1566897
Title :
Very large GMR of spin valve with specularly reflective layers
Author :
Hong, Jonggi ; Kanai, Hiroshi ; Uehara, Yuji
Author_Institution :
Magnetic Recording Technol. Lab., Fujitsu Labs. Ltd., Atsugi, Japan
fYear :
2002
Abstract :
Summary form only given. Our specular spin valves fabricated by a novel technique have provided excellent head performance suitable for an ultra-high recording density. We previously used a spin valve with an oxide capping layer (a so-called single specular spin valve) for the demonstration of 56.1 Gb/in/sup 2/. The single specular spin valve was magnetically soft and its GMR value reached over 12%. However, the specularity was still low at the interface between the pinned layer and the Cu spacer. Embedding another oxide layer into the pinned layer (creating a so-called double specular spin valve), we enhanced the specularity and this led to a GMR value of over 15%. As a matter of fact, we increased the output of the read head with this double specular spin valve by more than 50% over that of the read head used in the demonstration. Therefore, we demonstrated that the head with the double specular spin valve can be used for an areal density of 106.4 Gb/in/sup 2/ in magnetic recording, with the help of advanced media and integration techniques.
Keywords :
digital magnetic recording; giant magnetoresistance; magnetic heads; reflection; spin valves; Cu; GMR value; double specular spin valve; head performance; magnetic recording; magnetoresistive heads; specularly reflective layers; ultra-high recording density; Decision support systems; Disk drives; Laboratories; Magnetic heads; Magnetic properties; Magnetic recording; Soft magnetic materials; Spin valves; Thermal stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference, 2002. INTERMAG Europe 2002. Digest of Technical Papers. 2002 IEEE International
Conference_Location :
Amsterdam, The Netherlands
Print_ISBN :
0-7803-7365-0
Type :
conf
DOI :
10.1109/INTMAG.2002.1000945
Filename :
1000945
Link To Document :
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