Strong higher-order angular dependence of spin-orbit torque in W/CoFeB bilayer
- Authors
- Park, Eun-Sang; Lee, Dong-Kyu; Xue, Fei; Min, Byoung-Chul; Koo, Hyun Cheol; Haney, Paul M.; Kim, Kyoung-Whan; Lee, Kyung-Jin
- Issue Date
- 2023-02
- Publisher
- AMER PHYSICAL SOC
- Citation
- Physical Review B, v.107, no.6
- Abstract
- The symmetry of normal metal/ferromagnet bilayers allows spin-orbit torques (SOTs) to simultaneously have two distinct angular dependences on the magnetization direction <SIC>m. The most well-studied forms of SOT consist of the conventional fieldlike and dampinglike torques, which we label as "lowest-order" SOT. There are additional SOT forms associated with spin polarization different from that of the lowest-order SOT, and which contain an extra factor of m<SIC> dependence. We label these as "higher-order" SOT. Understanding SOT-driven magnetization dynamics requires detailed information about the full angular dependence. In this paper, we measure both the lowest-order and higher-order angular dependences of SOTs in three types of bilayers, Pt/Co, Ta/CoFeB, and W/CoFeB, using harmonic Hall measurements. It is found that the higher-order SOT is negligible for Pt/Co and Ta/CoFeB, whereas it is dominant over the lowest-order one for W/CoFeB. Macrospin simulations show that the higher-order SOT can significantly affect the magnetization dynamics, which is qualitatively in line with SOT-induced switching experiments.
- Keywords
- CURRENT-DRIVEN DYNAMICS; PERPENDICULAR MAGNETIZATION; LOW-POWER; SYMMETRY
- ISSN
- 2469-9950
- URI
- https://pubs.kist.re.kr/handle/201004/114013
- DOI
- 10.1103/PhysRevB.107.064411
- Appears in Collections:
- KIST Article > 2023
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