Physical Review Letters · 2019 · 105 citations · 53 references
Tailoring Gilbert damping of metallic ferromagnetic thin films is one of the central interests in spintronics applications. Here we report a giant Gilbert damping anisotropy in epitaxial Co_{50}Fe_{50} thin films with a maximum-minimum damping ratio of 400%, determined by broadband spin-torque ferromagnetic resonance as well as inductive ferromagnetic resonance. We conclude that the origin of this damping anisotropy is the variation of the spin orbit coupling for different magnetization orientations in the cubic lattice, which is further corroborated from the magnitude of the anisotropic magnetoresistance in Co_{50}Fe_{50}.
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Andrii V. Chumak, Vitaliy I. Vasyuchka, A. A. Serga et al. · Nature Physics · 2015 · 2.4K citations
Microwave oscillations of a nanomagnet driven by a spin-polarized current
S. I. Kiselev, Jack C. Sankey, I. N. Krivorotov et al. · Nature · 2003 · 2K citations · Full text
Enhanced Gilbert Damping in Thin Ferromagnetic Films
Yaroslav Tserkovnyak, Arne Brataas, G. Bauer · Physical Review Letters · 2002 · 1.9K citations · Full text