Perpendicular exchange bias in IrMn/Pt/[Co/Pt] 3 multilayers with cone magnetization

The perpendicular exchange bias and magnetic anisotropy were investigated in IrMn/Pt/[Co/Pt] 3 multilayers through the analysis of in-plane and out-of-plane magnetization hysteresis loops. A phenomenological model was used to simulate the in-plane curves and the effective perpendicular anisotropies...

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Veröffentlicht in:Thin solid films 2011-07, Vol.519 (19), p.6591-6594
Hauptverfasser: Castro, G.M.B., Nagamine, L.C.C.M., Geshev, J., Saitovich, E.B., Schmidt, J.E.
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Sprache:eng
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Zusammenfassung:The perpendicular exchange bias and magnetic anisotropy were investigated in IrMn/Pt/[Co/Pt] 3 multilayers through the analysis of in-plane and out-of-plane magnetization hysteresis loops. A phenomenological model was used to simulate the in-plane curves and the effective perpendicular anisotropies were obtained employing the area method. The canted state anisotropy was introduced by taking into account the first and second uniaxial anisotropy terms of the ferromagnet with the corresponding uniaxial anisotropy direction allowed to make a nonzero angle with the film's normal. This angle, obtained from the fittings, was of approximately 15° for IrMn/[Co/Pt] 3 film and decreases with the introduction of Pt in the IrMn/Pt/ [Co/Pt] 3 system, indicating that the Pt interlayer leads to a predominant perpendicular anisotropy. A maximum of the out-of-plane anisotropy was found between 0.5 and 0.6 nm of Pt, whereas a maximum of the perpendicular exchange bias was found at 0.3 nm. These results are very similar to those obtained for IrMn/Cu/[Co/Pt] 3 system; however, the decrease of the exchange bias with the spacer thickness is more abrupt and the enhacement of the perpendicular anisotropy is higher for the case of Cu spacer as compared with that of Pt spacer. The existence of a maximum in the perpendicular exchange bias as a function of the Pt layer thickness was attributed to the predominance of the enhancement of exchange bias due to more perpendicular Co moment orientation over the exponential decrease of the ferromagnetic/antiferromagnetic exchange coupling and, consequently, of the exchange-bias field.
ISSN:0040-6090
1879-2731
DOI:10.1016/j.tsf.2011.04.223