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首页> 外文期刊>Nature Communications >Dipolar-energy-activated magnetic domain pattern transformation driven by thermal fluctuations
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Dipolar-energy-activated magnetic domain pattern transformation driven by thermal fluctuations

机译:由热波动驱动的偶极能量激活的磁畴图案变换

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摘要

Two-dimensional ferromagnetic layers can serve as a playground for the study of basic physical properties of various pattern forming systems by virtue of their tuneable magnetic properties. Here we use threshold photoemission magnetic circular dichroism in combination with photoemission electron microscopy to investigate ultra-thin ferromagnetic Fe / Ni / Cu (001) films in the stripe domain phase near the spin reorientation transition as a function of film thickness, temperature and effective anisotropy. Here we report a metastable domain state with domain width larger than the thermodynamically stable one as a result of a rapid reduction of the anisotropy. The transformation into the equilibrium state takes place via the propagation of a transition front, which originates from defined steps in the film thickness.
机译:二维铁磁层凭借其可调节的磁性能,可以用作研究各种图案形成系统的基本物理性能的场所。在这里,我们将阈值光发射磁性圆二色性与光发射电子显微镜相结合,研究了自旋重新取向转变附近的条纹畴相中的超薄铁磁Fe / Ni / Cu(001)薄膜,其与薄膜厚度,温度和有效各向异性的关系。在这里,由于各向异性的迅速降低,我们报告了一个亚稳态畴态,其畴宽大于热力学稳定态。过渡态的发生是通过过渡前沿的传播而发生的,该过渡前沿起源于膜厚的确定台阶。

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