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首页> 外文期刊>Journal of Physics. Condensed Matter >Magnetization curves of an Fe/Gd multilayer film calculated from Gd magnetization depth profiles determined by resonant x-ray magnetic scattering
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Magnetization curves of an Fe/Gd multilayer film calculated from Gd magnetization depth profiles determined by resonant x-ray magnetic scattering

机译:根据共振X射线磁散射确定的Gd磁化深度分布计算出的Fe / Gd多层膜的磁化曲线

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摘要

Magnetization-versus-applied-field curves M(H) are calculated for an [Fe(3.48 nm)/Gd(5.43 nm)](15) multilayer film using the Gd magnetization depth profiles derived from the resonant x-ray magnetic scattering data collected with an applied field of 2.4 kOe. Stable magnetic structures for other field strengths are calculated by minimizing the sum of the Fe-Fe, Gd-Gd and Gd-Fe exchange energies and the Zeeman energy in a temperature range of 140-240 K. The calculated curves fit very well the slowly rising M(H) curves observed at temperatures between 140 and 200 K, where the Gd layers are ferromagnetic, over a wide field range up to 50 kOe on adjusting a molecular-field constant for the Fe-Gd interfaces, the only one free parameter used. The concave magnetization depth profiles in the Gd layers are essential to reproduce the observed M(H) curves. The discrepancies between the observed and calculated curves in, low-field regions represent the limitation of the single-magnetic-domain model used in the calculation. [References: 16]
机译:使用从共振X射线磁散射数据得出的Gd磁化深度分布,计算[Fe(3.48 nm)/ Gd(5.43 nm)](15)多层膜的磁化强度与施加磁场的曲线M(H)在2.4 kOe的应用场中收集。在140-240 K的温度范围内,通过最小化Fe-Fe,Gd-Gd和Gd-Fe交换能与塞曼能的总和,可以计算出用于其他场强的稳定磁性结构。调节Fe-Gd界面的分子场常数(唯一的一个自由参数)时,在140至200 K之间的温度下观察到的上升的M(H)曲线,其中Gd层是铁磁性的,在高达50 kOe的宽场范围内用过的。 Gd层中的凹入磁化深度轮廓对于重现观察到的M(H)曲线至关重要。在低场区域中观察到的曲线与计算得出的曲线之间的差异代表了在计算中使用的单磁畴模型的局限性。 [参考:16]

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