Direct dynamic imaging of non-adiabatic spin torque effects

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作者
S.D. Pollard
L. Huang
K.S. Buchanan
D.A. Arena
Y. Zhu
机构
[1] Brookhaven National Laboratory,Department of Condensed Matter Physics
[2] Stony Brook University,Department of Physics and Astronomy
[3] Colorado State University,Department of Physics
[4] National Synchrotron Source,undefined
[5] Brookhaven National Laboratory,undefined
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Nature Communications | / 3卷
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摘要
Spin-transfer torques offer great promise for the development of spin-based devices. The effects of spin-transfer torques are typically analysed in terms of adiabatic and non-adiabatic contributions. Currently, a comprehensive interpretation of the non-adiabatic term remains elusive, with suggestions that it may arise from universal effects related to dissipation processes in spin dynamics, while other studies indicate a strong influence from the symmetry of magnetization gradients. Here we show that enhanced magnetic imaging under dynamic excitation can be used to differentiate between non-adiabatic spin-torque and extraneous influences. We combine Lorentz microscopy with gigahertz excitations to map the orbit of a magnetic vortex core with <5 nm resolution. Imaging of the gyrotropic motion reveals subtle changes in the ellipticity, amplitude and tilt of the orbit as the vortex is driven through resonance, providing a robust method to determine the non-adiabatic spin torque parameter β=0.15±0.02 with unprecedented precision, independent of external effects.
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