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Tuning the magnetodynamic properties of all-perpendicular spin valves using He+ irradiation

Authors :
Jiang, Sheng
Chung, Sunjae
Diez, Liza Herrera
Le, Tuan Quang
Magnusson, Fredrik
Ravelosona, Dafine
Åkerman, Johan
Jiang, Sheng
Chung, Sunjae
Diez, Liza Herrera
Le, Tuan Quang
Magnusson, Fredrik
Ravelosona, Dafine
Åkerman, Johan
Publication Year :
2018

Abstract

Using He+ ion irradiation, we demonstrate how the magnetodynamic properties of both ferromagnetic layers in all-perpendicular [Co/Pd]/Cu/[Co/Ni] spin valves can be tuned by varying the He+ ion fluence. As the perpendicular magnetic anisotropy of both layers is gradually reduced by the irradiation, different magnetic configurations can be achieved from all-perpendicular (up arrow up arrow), through orthogonal (->up arrow), to all in-plane (paired right arrows). In addition, both the magnetic damping (alpha) and the inhomogeneous broadening (Delta H-0) of the Co/Ni layer improve substantially with increasing fluence. While the GMR of the spin valve is negatively affected, decreasing linearly from an original value of 1.14% to 0.4% at the maximum fluence of 50x10(14) He+/cm(2), most of the Co/Ni layer improvement is achieved already at a fluence of 10x10(14) He+/cm(2), for which GMR only reduces to 0.9%.

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235190022
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1063.1.5024472