Variation of spin-orbit torque and spin transport properties by V alloying in β-W-based magnetic heterostructures

Authors
Kim, G.W.Lee, J.K.Kim, T.Lee, M.H.Cha, I.H.Cho, J.Lee, Ouk JaeKim, Y.K.
Issue Date
2022-04
Publisher
Pergamon Press Ltd.
Citation
Scripta Materialia, v.211
Abstract
Of transition metals, β-W exhibits the maximum charge-to-spin conversion efficiency. However, due to the lack of phase stability, the β-W-based alloy has rarely been investigated as a spin current generating layer. This study examines W?V alloy layers with various W100-xVx/CoFeB/MgO/Ta heterostructure compositions. X-ray diffraction confirms that the β-W matrix is conserved up to a V content of 20 at%. We attain a maximum damping-like torque efficiency of ?0.45 ± 0.04 for the W80V20 alloy-based heterostructure through the harmonic response method. Furthermore, we determine the spin diffusion length of the W80V20 layer and specify the interfacial spin transparency of the W80V20/CoFeB structure by adopting the spin diffusion model. Consequently, we suggest an intrinsic spin-Hall angle of ?0.86. In addition, we observe in-plane current-induced switching. Our results establish the potential of the β-phase W-V alloy layer as a spin current source layer in spintronic devices. ? 2021
Keywords
CURRENT-DRIVEN DYNAMICS; INTERFACES; MEMORY; Current-induced magnetization switching; Magnetic Anisotropy; Normal metal/ferromagnet heterostructure; Spin-orbit torque; W-V alloy
ISSN
1359-6462
URI
https://pubs.kist.re.kr/handle/201004/115495
DOI
10.1016/j.scriptamat.2021.114486
Appears in Collections:
KIST Article > 2022
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