用洛伦兹显微镜研究了电流激发磁畴和畴壁动力学的随机性质

Y. Togawa, T. Kimura, K. Harada, A. Tonomura, Y. Otani
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引用次数: 0

摘要

利用洛伦兹显微镜和同步输运测量技术,研究了电流脉冲在坡莫合金窄导线中诱导的磁畴和畴壁的动力学。各种磁畴和畴壁的动态变化是电流密度和电阻的函数。重要的发现是,观察到的磁畴壁位移和磁畴成核明显地表现出随机性质,表明仅使用电流脉冲很难控制导线中的磁态。然而,小的面内磁场的应用极大地改变了磁场的确定性,有效地提高了磁畴和畴壁动态的电流可控性。
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Stochastic nature of current-excited magnetic domain and domain wall dynamics microscopically investigated by Lorentz microscopy
We microscopically investigate the dynamics of magnetic domains and domain walls induced by a current pulse in Permalloy narrow wires by means of Lorentz microscopy and simultaneous transport measurement. A variety of magnetic domain and domain wall dynamics are induced as a function of current density flowing into the wire and wire resistance. Important finding is that observed magnetic domain wall displacement and domain nucleation explicitly exhibit stochastic nature, indicating that the magnetic state in the wire is hardly controlled by using solely the current pulse. However, the application of small in-plane magnetic field changes drastically the nature into deterministic, which effectively improves controllability of the magnetic domain and domain wall dynamics using current.
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