Giant perpendicular magnetic anisotropy in Ir/Co/Pt multilayers
Yong-Chang Lau, Zhendong Chi, Tomohiro Taniguchi, Masashi Kawaguchi,, Goro Shibata, Naomi Kawamura, Motohiro Suzuki, Shunsuke Fukami, Atsushi, Fujimori, Hideo Ohno, Masamitsu Hayashi

TL;DR
This study investigates the magnetic properties of Ir/Co/Pt multilayers, revealing how structural asymmetry and interlayer exchange coupling influence perpendicular magnetic anisotropy and magnetic interactions.
Contribution
It demonstrates that broken structural inversion symmetry has a small effect on PMA, but asymmetric multilayers exhibit significantly enhanced interlayer exchange coupling and magnetic anisotropy.
Findings
Asymmetric Ir/Co/Pt multilayers show exchange fields over 3 T.
Interfacial PMA is slightly affected by inversion symmetry breaking.
Proximity-induced magnetization in Pt is larger in Ir/Co/Pt structures.
Abstract
We have studied the magnetic properties of multilayers composed of ferromagnetic metal Co and heavy metals with strong spin orbit coupling (Pt and Ir). Multilayers with symmetric (ABA stacking) and asymmetric (ABC stacking) structures are grown to study the effect of broken structural inversion symmetry. We compare the perpendicular magnetic anisotropy (PMA) energy of symmetric Pt/Co/Pt, Ir/Co/Ir multilayers and asymmetric Pt/Co/Ir, Ir/Co/Pt multilayers. First, the interface contribution to the PMA is studied using the Co layer thickness dependence of the effective PMA energy. Comparison of the interfacial PMA between the Ir/Co/Pt, Pt/Co/Ir asymmetric structures and Pt/Co/Pt, Ir/Co/Ir symmetric structures indicate that the broken structural inversion symmetry induced PMA is small compared to the overall interfacial PMA. Second, we find the magnetic anisotropy field is significantly…
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