English

Spin-orbit torque and spin pumping in YIG/Pt with interfacial insertion layers

Materials Science 2018-05-07 v3

Abstract

We experimentally investigate spin-orbit torque and spin pumping in Y3_3Fe5_5O12_{12}(YIG)/Pt bilayers with ultrathin insertion layers at the interface. An insertion layer of Cu suppresses both spin-orbit torque and spin pumping, whereas an insertion layer of Ni80_{80}Fe20_{20} (permalloy, Py) enhances them, in a quantitatively consistent manner with the reciprocity of the two spin transmission processes. However, we observe a large enhancement of Gilbert damping with the insertion of Py that cannot be accounted for solely by spin pumping, suggesting significant spin-memory loss due to the interfacial magnetic layer. Our findings indicate that the magnetization at the YIG-metal interface strongly influences the transmission and depolarization of pure spin current.

Keywords

Cite

@article{arxiv.1802.03865,
  title  = {Spin-orbit torque and spin pumping in YIG/Pt with interfacial insertion layers},
  author = {Satoru Emori and Alexei Matyushov and Hyung-Min Jeon and Christopher J. Babroski and Tianxiang Nan and Amine M. Belkessam and John G. Jones and Michael E. McConney and Gail J. Brown and Brandon M. Howe and Nian X. Sun},
  journal= {arXiv preprint arXiv:1802.03865},
  year   = {2018}
}
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