首页> 外文期刊>Bulletin of the Russian Academy of Sciences. Physics >Dynamics of the Magnetization Vector during the 180° Pulsed Magnetization Reversal of Ferrite–Garnet Films with Complex Anisotropy
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Dynamics of the Magnetization Vector during the 180° Pulsed Magnetization Reversal of Ferrite–Garnet Films with Complex Anisotropy

机译:复杂各向异性的180°脉冲磁化逆转180°脉冲磁化逆转磁化向量的动态

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摘要

The regime of 180° pulsed magnetization reversal of ferrite-garnet films with planar anisotropy in the region of external fields, in which the mechanism of uniform rotation of the magnetization operates, is investigated for the first time. An analysis of numerical solutions of the Landau–Lifshitz equation and our experimental studies show that, as in the case of the 90° pulsed magnetization, the presence of biaxial anisotropy in real ferrite–garnet films also leads to the so-called “effect of delayed acceleration of the transient process.” In addition, it is found that under certain conditions it is possible to achieve two stable final positions of the magnetization vector that correspond to 180° and 90°.
机译:在外部场区域的平面各向异性的180°脉冲磁化反转的制度,其中磁化操作均匀旋转的机理进行了第一次。 LANDAU-LIFSHITZ方程的数值解决方案分析及实验研究表明,如在90°脉冲磁化的情况下,实际铁氧体 - 石榴石膜中双轴各向异性的存在也导致所谓的“效果” 延迟加速瞬态过程。“ 另外,发现在某些条件下,可以实现对应于180°和90°的磁化载体的两个稳定的最终位置。

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