A new reversal mode in exchange coupled antiferromagnetic/ferromagnetic disks : Distorted viscous vortex

Author

Gilbert, Dustin A.

Ye, Li

Varea Espelt, Aïda

Agramunt Puig, Sebastià

Valle Benedí, Nuria del

Navau Ros, Carles

López-Barbera, José Francisco

Buchanan, K. S.

Hoffmann, Axel

Sánchez Moreno, Àlvar

Sort Viñas, Jordi

Liu, Kai

Nogués, Josep

Publication date

2015

Abstract

Magnetic vortices have generated intense interest in recent years due to their unique reversal mechanisms, fascinating topological properties, and exciting potential applications. In addition, the exchange coupling of magnetic vortices to antiferromagnets has also been shown to lead to a range of novel phenomena and functionalities. Here we report a new magnetization reversal mode of magnetic vortices in exchange coupled Ir<inf>20</inf>Mn<inf>80</inf>/Fe<inf>20</inf>Ni<inf>80</inf> microdots: distorted viscous vortex reversal. In contrast to the previously known or proposed reversal modes, the vortex is distorted close to the interface and viscously dragged due to the uncompensated spins of a thin antiferromagnet, which leads to unexpected asymmetries in the annihilation and nucleation fields. These results provide a deeper understanding of the physics of exchange coupled vortices and may also have important implications for applications involving exchange coupled nanostructures.

Document Type

Article

Language

English

Subjects and keywords

Antiferromagnetics; Antiferromagnets; Exchange coupled; Magnetic vortices; Nucleation field; Reversal mechanism; Reversal modes; Topological properties

Publisher

 

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Nanoscale ; Vol. 7, Issue 21 (June 2015), p. 9878-9885

Rights

open access

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