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Microscopic domain structures in unidirectional and isotropic exchange-coupled NiO/NiFe bilayers
Authors:D. G. Hwang   J. K. Kim   S. W. Kim   S. S. Lee   H. Koo   S. H. Chung   M. Dreyer  R. D. Gomez
Affiliation:

a Department of Computer and Electronic Physics, Sangji University, Wonju 220-702, South Korea

b Department of Physics, Dankook University, Cheonan 330-714, South Korea

c Department of Electrical and Computer Engineering, University of Maryland, College Park, MD 20742, USA

Abstract:The dependence on nickel oxide thickness in unidirectional and isotropic exchange-coupled NiO/NiFe bilayer films was investigated by magnetic force microscopy to better understand exchange biasing at microscopic length scales. As the NiO thickness increased, the domain structure of unidirectional biased films formed smaller and more complex in-plane domains. By contrast, for the isotropically coupled films, large domains generally formed with increasing NiO thickness including a new cross type domain with out-of-plane magnetization orientation. The density of the cross domain is proportional to exchange biasing field, and the fact that the domain mainly originated from the strongest exchange coupled region was confirmed by imaging in an applied external field during a magnetization cycle.
Keywords:Exchange biasing   Cross-type domain   Nickel oxide   MFM
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