Interfacial exchange coupling and magnetization reversal in perpendicular [Co/Ni]N/TbCo composite structures

M. H. Tang, Zongzhi Zhang, S. Y. Tian, J. Wang, B. Ma, Q. Y. Jin

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Interfacial exchange coupling and magnetization reversal characteristics in the perpendicular heterostructures consisting of an amorphous ferrimagnetic (FI) TbxCo100-x alloy layer exchange-coupled with a ferromagnetic (FM) [Co/Ni]N multilayer have been investigated. As compared with pure TbxCo100-x alloy, the magnetization compensation composition of the heterostructures shift to a higher Tb content, implying Co/Ni also serves to compensate the Tb moment in TbCo layer. The net magnetization switching field Hc⊥ and interlayer interfacial coupling field Hex, are not only sensitive to the magnetization and thickness of the switched TbxCo100-x or [Co/Ni]N layer, but also to the perpendicular magnetic anisotropy strength of the pinning layer. By tuning the layer structure we achieve simultaneously both large Hc⊥ = 1.31 T and Hex = 2.19 T. These results, in addition to the fundamental interest, are important to understanding of the interfacial coupling interaction in the FM/FI heterostructures, which could offer the guiding of potential applications in heat-assisted magnetic recording or all-optical switching recording technique.

Original languageEnglish
Article number10863
JournalScientific Reports
Volume5
DOIs
StatePublished - 15 Jun 2015
Externally publishedYes

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