Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers

Schepper W, Hütten A, Reiss G (2000)
JOURNAL OF APPLIED PHYSICS 88(2): 993-998.

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Abstract
Up to now, giant magnetoresistance (GMR) multilayers usually consist of only one type of double layer (e.g., permalloy/copper). In this work, we report on results obtained on mixed systems, i.e., multilayers containing simultaneously the first and second maximum of the antiferromagnetic coupling. Both a phenomenological numerical approach as well as experimental results demonstrate, that such systems can be used for tailoring new shapes of GMR curves. (C) 2000 American Institute of Physics. [S0021-8979(00)04314-0].
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Schepper W, Hütten A, Reiss G. Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers. JOURNAL OF APPLIED PHYSICS. 2000;88(2):993-998.
Schepper, W., Hütten, A., & Reiss, G. (2000). Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers. JOURNAL OF APPLIED PHYSICS, 88(2), 993-998.
Schepper, W., Hütten, A., and Reiss, G. (2000). Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers. JOURNAL OF APPLIED PHYSICS 88, 993-998.
Schepper, W., Hütten, A., & Reiss, G., 2000. Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers. JOURNAL OF APPLIED PHYSICS, 88(2), p 993-998.
W. Schepper, A. Hütten, and G. Reiss, “Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers”, JOURNAL OF APPLIED PHYSICS, vol. 88, 2000, pp. 993-998.
Schepper, W., Hütten, A., Reiss, G.: Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers. JOURNAL OF APPLIED PHYSICS. 88, 993-998 (2000).
Schepper, Willi, Hütten, Andreas, and Reiss, Günter. “Optimization processes of giant magnetoresistance characteristic for mixed magnetic multilayers”. JOURNAL OF APPLIED PHYSICS 88.2 (2000): 993-998.
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