arXiv · 1412.8224
Tunable Transient Decay Times in Nonlinear Systems: Application to Magnetic Precession
Abstract
The dynamical motion of the magnetization plays a key role in the properties of magnetic materials. If the magnetization is initially away from the equilibrium direction in a magnetic nanoparticle, it will precess at a natural frequency and, with some damping present, will decay to the equilibrium position in a short lifetime. Here we investigate a simple but important situation where a magnetic nanoparticle is driven non-resonantly by an oscillating magnetic field, not at the natural frequency. We find a surprising result that the lifetime of the transient motion is strongly tunable, by factors of over 10,000, by varying the amplitude of the driving field.
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M. G. Phelps, K. L. Livesey, A. M. Ferona, R. E. Camley. 2014-12-28. Tunable Transient Decay Times in Nonlinear Systems: Application to Magnetic Precession. https://doi.org/10.1209/0295-5075/109/37007
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