Contributions of interfacial spin-orbit coupling to magnetic and spintronic properties in AuPt/ferromagnet bilayers

Authors
Yun, Deok HyunHan, Ki-HyukNah, Young-JunKim, YongJinJang, Seung-HunKang, Min-GuShin, Sang-HoMin, Byoung-ChulKoo, Hyun CheolJu, Byeong-KwonLee, OukJae
Issue Date
2024-08
Publisher
American Institute of Physics
Citation
Applied Physics Letters, v.125, no.7
Abstract
We investigate the relationships between various magnetic and spintronic properties within AuPt/ferromagnet (FM) bilayers (FM = CoFe, CoFeB, Py, and Co). A linear correlation between the volume and surface magnetic anisotropies is identified, potentially influenced by the magnetoelastic effect. The FM thickness dependence of the magnetic damping indicates that spin-memory loss due to the interfacial spin-orbit coupling (ISOC) and spin pumping to the heavy-metal layer contribute little to the damping. Instead, a notable contribution from two magnon scattering to the damping is recognized in AuPt/(Co, CoFe, CoFeB) bilayers, possibly originating from a magnetic inhomogeneity due to the ISOC. In addition, in contrast to the magnetic damping, spin-orbit-torque efficiencies are unlikely related to the ISOC in AuPt/FM systems. This work offers valuable insights into the correlations among magnetic and spintronic parameters arising from the interfaces, ultimately aiding in the advancement of magnetic memory and information processing systems.
Keywords
TORQUE
ISSN
0003-6951
URI
https://pubs.kist.re.kr/handle/201004/150542
DOI
10.1063/5.0216571
Appears in Collections:
KIST Article > 2024
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