Magnetization reversal via internal spin waves in magnetic nanoparticles
classification
❄️ cond-mat.other
cond-mat.mtrl-sci
keywords
magnetizationreversalinternalmagneticparticleratesrelaxationspin-wave
read the original abstract
By numerically solving the equations of motion for atomic spins we show that internal spin-wave processes in large enough magnetic particles, initially in unstable states, lead to complete magnetization reversal and thermalization. The particle's magnetization strongly decreases in the middle of reversal and then recovers. We identify two main scenarios, exponential and linear spin-wave instabilities. For the latter, the longitudinal and transverse relaxation rates have been obtained analytically. Orientation dependence of these rates leads to a nonexponential relaxation of the particle's magnetization at long times.
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