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Temperature dependence of surface magnetization in local-moment systems

机译:局部力矩系统中表面磁化的温度依赖性

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We present a theory to study the temperature-dependent behavior of surface magnetization in a ferromagnetic semi-infinite crystal. Our approach is based on the single-site approximation for the s-f model. The effect of the semi-infinite nature of the crystal is taken into account by a localized perturbation method: Using the mean-field theory for the layer-dependent magnetization, the local density of states and the electron-spin polarization are investigated at different temperatures for ordinary and surface transition cases. The results show that the surface magnetic properties may differ strongly from those in the bulk and the coupling constant of atoms plays a decisive role in the degree of spin polarization. In particular, for the case in which the exchange coupling constant on the surface and between atoms in the first and second layer is higher than the corresponding in the bulk, an enhancement of surface Curie temperature and hence the spin polarization can be obtained. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们提出了一种理论来研究铁磁半无限晶体中表面磁化的温度相关行为。我们的方法基于s-f模型的单点近似。通过局部摄动方法考虑了晶体的半无限性质的影响:使用均场理论进行层依赖的磁化,研究了在不同温度下的局部态密度和电子自旋极化适用于普通和表面过渡情况。结果表明,表面磁性能可能与本体磁性能有很大差异,原子的耦合常数在自旋极化度中起决定性作用。特别地,对于第一层和第二层中的表面上以及原子之间的交换耦合常数高于整体中的对应耦合常数的情况,可以提高表面居里温度并因此获得自旋极化。 (c)2006 Elsevier B.V.保留所有权利。

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