Oscillatory transient regime in the forced dynamics of a spin torque nano-oscillator
Abstract
We demonstrate that the transient non-autonomous dynamics of a spin torque nano-oscillator (STNO) under a radio-frequency (rf) driving signal is qualitatively different from the dynamics described by the Adler model. If the external rf current Irf is larger than a certain critical value Icr (determined by the STNO bias current and damping) strong oscillations of the STNO power and phase develop in the transient regime. The frequency of these oscillations increases with Irf as Irf - Icr and can reach several GHz, whereas the damping rate of the oscillations is almost independent of Irf. This oscillatory transient dynamics is caused by the strong STNO nonlinearity and should be taken into account in most STNO rf applications.
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