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    Hua-Nan Li, Zi-Wei Fan, Jia-Xin Li, Yue Hu, Hui-Lian Liu. Magnetic vortex gyration mediated by point-contact positionJ. Chin. Phys. B, 2019, 28(10): 107503.
    Hua-Nan Li, Zi-Wei Fan, Jia-Xin Li, Yue Hu, Hui-Lian Liu. Magnetic vortex gyration mediated by point-contact positionJ. Chin. Phys. B, 2019, 28(10): 107503.
  • Magnetic vortex gyration mediated by point-contact position

    • Micromagnetic simulation is employed to study the gyration motion of magnetic vortices in distinct permalloy nanodisks driven by a spin-polarized current. The critical current density for magnetic vortex gyration, eigenfrequency, trajectory, velocity and the time for a magnetic vortex to obtain the steady gyration are analyzed. Simulation results reveal that the magnetic vortices in larger and thinner nanodisks can achieve a lower-frequency gyration at a lower current density in a shorter time. However, the magnetic vortices in thicker nanodisks need a higher current density and longer time to attain steady gyration but with a higher eigenfrequency. We also find that the point-contact position exerts different influences on these parameters in different nanodisks, which contributes to the control of the magnetic vortex gyration. The conclusions of this paper can serve as a theoretical basis for designing nano-oscillators and microwave frequency modulators.
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