Doctor of Engineering
With Certificate of Graduation for Doctorate Study
Gender:Male
Date of Employment:2005-04-01
E-Mail:2dfae7fbc3b4eee77cbc83e6dc0991c98a03764bcc68440b36c566a8436e2ae8a1583db720d39738c58ecf51abdfc0792241b0c642189c27038028cf0502664fcf2ad60fb7a8e4099e84c7a18122e783ed3307500b5c9fbe19c3e89a1d71dd219103fa75b78e4c54f92297151d3fe6fc58621daf6a763c7e396f0951bd7581e1
Email:c045ee02cf98f3c8badd036e7bb5177b47f43a3c5e8068fdb1fbaf5b1a2b1c379d52673dfd4418a27d6de7464b5824033fcc7853b02961697e9d54402740773f73b957f231b409a9b1301b36a226460ea4a21a697903124a28bd1e0b5beb7fc196c290c4a3c04f9e1afef461deb669e658a79d928965266b30d2529ad49f5d79
Affiliation of Author(s):[1]Univ Elect Sci & Technol China, Sch Microelect & Solid State Elect, Chengdu 61054, Peoples R China
Journal:PHYSICS LETTERS A
Key Words:Ferromagnetism - Ferromagnetic materials
Abstract:The Camley-Barnas semiclassical model has been extended for magnetic sandwiches by considering the existing of inter-diffused region between the ferromagnetic and nonmagnetic layer. The giant magnetoresistance (GMR) curves of magnetic sandwiches with polycrystalline and amorphous magnetic layer were calculated respectively with this model. The calculations reproduce the experimental results well for both kinds of sandwiches, indicating that this new model is more effective than the original one. (c) 2006 Elsevier B.V. All rights reserved.
Document Type:Article
Volume:354
Issue:3
Page Number:232-235
ISSN No.:0375-9601
Translation or Not:no
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