Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation

Schepper W, Kubota H, Reiss G (2002)
In: Nanostructured Magnetic Materials and Their Applications. Lecture Notes in Physics, 593. 75-90.

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Sammelwerksbeitrag | Veröffentlicht | Englisch
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Nanostructured Magnetic Materials and Their Applications
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75-90
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Schepper W, Kubota H, Reiss G. Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation. In: Nanostructured Magnetic Materials and Their Applications. Lecture Notes in Physics, 593. 2002: 75-90.
Schepper, W., Kubota, H., & Reiss, G. (2002). Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation. Nanostructured Magnetic Materials and Their Applications, Lecture Notes in Physics, 593, 75-90.
Schepper, W., Kubota, H., and Reiss, G. (2002). “Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation” in Nanostructured Magnetic Materials and Their Applications Lecture Notes in Physics, 593 75-90.
Schepper, W., Kubota, H., & Reiss, G., 2002. Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation. In Nanostructured Magnetic Materials and Their Applications. Lecture Notes in Physics, 593. pp. 75-90.
W. Schepper, H. Kubota, and G. Reiss, “Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation”, Nanostructured Magnetic Materials and Their Applications, Lecture Notes in Physics, 593, 2002, pp.75-90.
Schepper, W., Kubota, H., Reiss, G.: Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation. Nanostructured Magnetic Materials and Their Applications. Lecture Notes in Physics, 593. p. 75-90. (2002).
Schepper, Willi, Kubota, Hitoshi, and Reiss, Günter. “Analysis of the Disturbing Influence of Stray Fields in Very Small MRAM Cells by Computer Simulation”. Nanostructured Magnetic Materials and Their Applications. 2002. Lecture Notes in Physics, 593. 75-90.

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