Anghel Mihaela - Academia.edu (original) (raw)

Anghel Mihaela

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Papers by Anghel Mihaela

Research paper thumbnail of Exchange bias and spin valve systems with Fe–Mn antiferromagnetic pinning layers, obtained by the thermo-ionic vacuum arc method

Journal of Magnetism and Magnetic Materials, 2008

Exchange bias and spin valve systems with Fe-Mn antiferromagnetic layers of different Fe concentr... more Exchange bias and spin valve systems with Fe-Mn antiferromagnetic layers of different Fe concentrations were obtained by the thermo-ionic vacuum arc method. The adherence of the multilayer system to the Si substrate depends on the Fe-Mn composition. The overall roughness depends on the growing order of the antiferromagnetic/ferromagnetic layers. Very low blocking temperatures for exchange bias were observed for the considered compositions of the Fe-Mn layer. The coercive forces of both the pinned and the free layers of spin valve structures can be considerably modified along a large set of samples simultaneously prepared. r

Research paper thumbnail of Laura Cenusa

Research paper thumbnail of Exchange bias and spin valve systems with Fe–Mn antiferromagnetic pinning layers, obtained by the thermo-ionic vacuum arc method

Journal of Magnetism and Magnetic Materials, 2008

Exchange bias and spin valve systems with Fe-Mn antiferromagnetic layers of different Fe concentr... more Exchange bias and spin valve systems with Fe-Mn antiferromagnetic layers of different Fe concentrations were obtained by the thermo-ionic vacuum arc method. The adherence of the multilayer system to the Si substrate depends on the Fe-Mn composition. The overall roughness depends on the growing order of the antiferromagnetic/ferromagnetic layers. Very low blocking temperatures for exchange bias were observed for the considered compositions of the Fe-Mn layer. The coercive forces of both the pinned and the free layers of spin valve structures can be considerably modified along a large set of samples simultaneously prepared. r

Research paper thumbnail of Laura Cenusa

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