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Engineering the magnetic properties of amorphous with multilayers of variable anisotropy direction
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10.1063/1.2724752
/content/aip/journal/apl/90/16/10.1063/1.2724752
http://aip.metastore.ingenta.com/content/aip/journal/apl/90/16/10.1063/1.2724752
View: Figures

Figures

Image of FIG. 1.
FIG. 1.

Hysteresis loops parallel and perpendicular to the incident direction of the plasma for two samples deposited at different sputtering powers of 30 and . The anisotropy axis induced at high powers does not depend on the direction of any external magnetic field.

Image of FIG. 2.
FIG. 2.

(a) Longitudinal and transversal hysteresis loops of a bilayered sample with and its counterpart single layer sample with the same total thickness. Significant differences on the linearity, anisotropy field, and coercive field can be observed between the two hard axis hysteresis loops. (b) Anisotropy, coercive field, and magnetostriction along the hard magnetic axis of the series of samples and their corresponding single layer with the same total thickness. (c) Schematic of the anisotropy configuration on the multilayers (left) and the corresponding single layer with the same total thickness.

Image of FIG. 3.
FIG. 3.

(Color online) Bitter images of a multilayer with in-plane perpendicular anisotropies (a) and a single layer of the same total thickness (b). Domain walls of the first sample are wider and show a remarkable contrast across their width; therefore, they are Néel walls. On the contrary, (b) shows thin and perfectly defined lines, such as Bloch domain walls.

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/content/aip/journal/apl/90/16/10.1063/1.2724752
2007-04-17
2014-04-25
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752b84549af89a08dbdd7fdb8b9568b5 journal.articlezxybnytfddd
Scitation: Engineering the magnetic properties of amorphous (Fe80Co20)80B20 with multilayers of variable anisotropy direction
http://aip.metastore.ingenta.com/content/aip/journal/apl/90/16/10.1063/1.2724752
10.1063/1.2724752
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