Double resonance response in nonlinear magnetic vortex dynamics
in: Physical Review B (2013)
We present experimental evidences for the dynamical bifurcation behavior of ac-driven magnetic vortex core gyration in a ferromagnetic disk. The dynamical bifurcation, i.e. appearance and disappearance of two stable dynamical states in the vortex gyration, occurring as the amplitude of the driving Oersted field BOe > Bcr Oe, manifests itself in a double resonance response in the dependence of homodyne the dc-voltage signal on the frequency ! of the applied microwave current. We nd that the frequency range ! between the two resonance features strongly increases with the excitation power. Our analysis based on the model of low dissipative nonlinear oscillator subject to a resonant alternating force, is in a good agreement with the experimental results. This allows us to determine quantitatively key parameters of magnetic vortex dynamics, i.e. the critical value of the driving Oersted field Bcr Oe for nonlinear dynamics to occur, the resonant frequency and the quality factor of the magnetic vortex gyration.