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Nonequilibrium Domain Pattern Formation in Mesoscopic Magnetic Thin Film Elements Assisted by Thermally Excited Spin Fluctuations

机译:热激发自旋涨落辅助介观磁性薄膜元件的非平衡畴图案形成

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摘要

The dynamic behavior in the evolving pattern of thermally assisted, nonequilibrium domains in magnetic thin-film elements undergoing ultrafast 180° magnetization reversal was studied. Magnetization reversal enters a fully dynamic regime when the external field conditions are changed much faster than the sample is able to respond. The dynamic pathway develops a complexity not seen in quasistatic reversal but still retains a high level of order with well-developed dynamic domain patterns formed in response to subnanosecond transitions of the external applied magnetic field.
机译:研究了热辅助,非平衡域在经历超快180°磁化反转的磁性薄膜元件中的演化行为。当外部磁场条件的变化快于样品的响应速度时,磁化反转将进入完全动态的状态。动态路径形成了在准静态反转中未见的复杂性,但仍保留了高阶的顺序,并具有响应于外部施加磁场的亚纳秒跃迁而形成的发达的动态域模式。

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