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Numerical study on microwave-assisted magnetization reversal of magnetic particles several tens of nanometers wide with perpendicular anisotropy

机译:微波辅助磁化逆转磁性颗粒的数值研究,具有垂直各向异性的几十纳米宽

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Microwave-assisted magnetization reversal (MAMR) is numerically investigated for perpendicularly magnetized particles with a natural ferromagnetic resonance frequency of 22.5 GHz. The precession angle of magnetization can be enhanced intensively by increasing the amplitude of the ac hard-axis field with an optimum frequency. However, the precession of magnetization about the easy axis becomes unstable as the precession angle reaches a critical value because the easy-axis component of the effective field exerted on the magnetization becomes zero. The analysis of magnetization dynamics in MAMR showed that the precession of magnetization about an in-plane axis, appearing after the easy-axis component of the effective field becomes zero, plays an important role in the irreversible switching of magnetization.
机译:微波辅助磁化反转(MAMR)对于具有22.5GHz的天然铁磁共振频率的垂直磁化颗粒。可以通过增加具有最佳频率的AC硬轴场的幅度来集中强烈地增强磁化角。然而,随着预流角度达到临界值,磁化磁化的预测变得不稳定,因为施加在磁化上的有效场的易轴分量变为零。 MAMR中的磁化动力学分析表明,在有效场的易轴分量变为零之后出现在面内轴上的磁化的预测,在磁化的不可逆切换中起重要作用。

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