TY - UNPB
T1 - Investigating the Interplay between Spin-Polarization and Magnetic Damping in $\mathrm{Co}_{x}\mathrm{Fe}_{80-x}\mathrm{B}_{20}$ for Magnonics Applications
AU - Gnoatto, Lorenzo
AU - Molier, Thomas
AU - Lamberts, Jelte J.
AU - Bassant, Artim L.
AU - Schippers, Casper F.
AU - Duine, Rembert A.
AU - Lavrijsen, Reinoud
PY - 2024/12/20
Y1 - 2024/12/20
N2 - For magnonics and spintronics applications, the spin polarization (P) of a transport current and the magnetic damping (α) play a crucial role, e.g. for magnetization dynamics and magnetization switching applications. In particular, P in a glassy (amorphous) 3d transition ferromagnet such as CoFeB and α are both strongly affected by s−d scattering mechanisms. Hence, a correlation can be expected which is a priori difficult to predict. In this work, P and α are measured using current-induced Doppler shifts using propagating spin-wave spectroscopy and broadband ferromagnetic resonance techniques in blanket films and current-carrying CoxFe80−xB20 alloy microstrips. The measured P ranges from 0.18 ± 0.05 to 0.39 ± 0.05 and α ranges from (4.0±0.2)⋅10−3 to (9.7±0.6)⋅10−3. We find that for increasing P a systematic drop in α is observed, indicating an interplay between magnetic damping and the spin polarization of the transport current which suggests that interband scattering dominates in CoxFe80−xB20. Our results may guide future experiments, theory, and applications in advancing spintronics and metal magnonics.
AB - For magnonics and spintronics applications, the spin polarization (P) of a transport current and the magnetic damping (α) play a crucial role, e.g. for magnetization dynamics and magnetization switching applications. In particular, P in a glassy (amorphous) 3d transition ferromagnet such as CoFeB and α are both strongly affected by s−d scattering mechanisms. Hence, a correlation can be expected which is a priori difficult to predict. In this work, P and α are measured using current-induced Doppler shifts using propagating spin-wave spectroscopy and broadband ferromagnetic resonance techniques in blanket films and current-carrying CoxFe80−xB20 alloy microstrips. The measured P ranges from 0.18 ± 0.05 to 0.39 ± 0.05 and α ranges from (4.0±0.2)⋅10−3 to (9.7±0.6)⋅10−3. We find that for increasing P a systematic drop in α is observed, indicating an interplay between magnetic damping and the spin polarization of the transport current which suggests that interband scattering dominates in CoxFe80−xB20. Our results may guide future experiments, theory, and applications in advancing spintronics and metal magnonics.
KW - physics.app-ph
U2 - 10.48550/arXiv.2412.15954
DO - 10.48550/arXiv.2412.15954
M3 - Preprint
VL - 2412.15954
BT - Investigating the Interplay between Spin-Polarization and Magnetic Damping in $\mathrm{Co}_{x}\mathrm{Fe}_{80-x}\mathrm{B}_{20}$ for Magnonics Applications
PB - arXiv.org
ER -