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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Comparison of dynamical and equilibrium surface spin reorientations: Inferences on the nature of the phase transitions in the presence of dipole interactions
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Comparison of dynamical and equilibrium surface spin reorientations: Inferences on the nature of the phase transitions in the presence of dipole interactions

机译:动态和平衡表面自旋重新取向的比较:偶极子相互作用下相变性质的推论

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The influence of long-range dipole interactions on two-dimensional magnetism has been studied extensively in the spin-reorientation transition of ferromagnetic ultrathin films. Although there is a great deal of experimental information on the perpendicular domain phase that is stabilized by dipole interactions, the transitions to or from the domain phase are subtle and difficult to characterize experimentally. Magnetic susceptibility measurements show no divergence in the vicinity of the spin-reorientation transition as a function of thickness-a null result that is difficult to interpret with confidence. This paper reports separate dynamical and equilibrium versions of the reorientation transition in Fe/2ML Ni/W(110) films, using measurements of the magnetic susceptibility as the films are grown. The dynamical version occurs when increasing the film thickness causes the domain walls to depin, and the system moves from a configuration that minimizes local energetics to one that minimizes global energetics. The dynamical transition is marked by a divergent magnetic susceptibility measured with a field applied along the in-plane W[001] direction. A comparative study of the two versions of the same spinreorientation transition aids in the experimental characterization of the effects of dipole interactions on the phase transitions. This comparison confirms the original null result found in magnetic susceptibility measurements of the equilibrium transition; despite its name, the spin-reorientation transition in ferromagnetic ultrathin films has no critical phase transition in either the magnetization or its orientation.
机译:在铁磁超薄膜的自旋取向转变中,已经广泛研究了长距离偶极子相互作用对二维磁性的影响。尽管在垂直畴相上有大量的实验信息可以通过偶极子相互作用来稳定,但进出畴相的跃迁却微妙且难以通过实验表征。磁化率测量结果表明,自旋取向转变附近不存在随厚度变化的变化,这是无效结果,难以置信。本文报道了Fe / 2ML Ni / W(110)薄膜中重新取向转变的动力学和平衡形式,通过测量薄膜生长时的磁化率来得出。当增加膜厚度导致畴壁变形时,会发生动态变化,并且系统会从一种将局部高能最小化的配置转变为一个将整体高能最小化的配置。动态转变的特征在于发散的磁化率,该发散的磁化率是通过沿面内W [001]方向施加的场测量的。对相同自旋取向转变的两个版本的比较研究有助于实验表征偶极相互作用对相变的影响。这种比较证实了在平衡转变的磁化率测量中发现的原始无效结果。尽管有其名称,但铁磁超薄膜中的自旋取向转变在磁化强度或其取向方面都没有临界相变。

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