Influence of head fields and media properties on transitions of magnetization reversals on thin film disk
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作者:
Iizuka, M.
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机构:Alps Electric Co., Ltd., Japan
Iizuka, M.
Kanai, Y.
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机构:Alps Electric Co., Ltd., Japan
Kanai, Y.
Hatanai, T.
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机构:Alps Electric Co., Ltd., Japan
Hatanai, T.
Konishi, T.
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机构:Alps Electric Co., Ltd., Japan
Konishi, T.
Mukasa, K.
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机构:Alps Electric Co., Ltd., Japan
Mukasa, K.
机构:
[1] Alps Electric Co., Ltd., Japan
[2] Hokkaido University, Japan
来源:
IEEE translation journal on magnetics in Japan
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1991年
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6卷
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12期
关键词:
Magnetic Fields - Magnetic Heads - Magnetization - Mathematical Techniques - Finite Element Method;
D O I:
10.1109/TJMJ.1991.4565303
中图分类号:
学科分类号:
摘要:
The authors describe a relationship between transition lengths and head fields for media of various coercivities. Signals with various transition lengths were written using a single-sided and a double-sided MIG head on three different thin film media having coercivities of 874, 1121, and 1270 Oe, respectively. The transition lengths were observed by the colloid SEM method. The head fields of the MIG heads were analyzed by the finite element method (FEM) with magnetic saturation taken into account. The following phenomena were discovered: (1) the secondary fields stray from the saturated ferrite region near the interface between the metal film and ferrite core of the MIG heads; and (2) the transition lengths are elongated due to the influence of the secondary field when the strength of the secondary field is greater than half of the medium coercivity. If the medium coercivity is twice as great as the secondary field strength, the transition length is closely related to the field gradient of the primary field in the recording zone.