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Standing spin waves in ultrathin magnetic films: A method to test for layer-dependent exchange coupling

机译:超薄磁性膜中的驻波自旋:测试层依赖交换耦合的方法

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摘要

We introduce a method to test theoretical models for the layer dependence of exchange coupling constants in ultrathin magnetic films. The method is based on the observation of high-energy and high-momentum standing spin wave modes using high-resolution electron energy loss spectroscopy. Experimental data are presented for 5–8 layers of fcc cobalt deposited on Cu(100). The power of the method is illustrated by comparison to two theoretical studies predicting rather different results concerning the ratio of the interlayer and intralayer exchange coupling constants near the surface. Only the theory with a large interlayer coupling shows sufficient energy spreading in the layer dependence of the dispersion curves to match the experimental data. We furthermore discuss the reason for the surprising success of the simple nearest-neighbor Heisenberg model with a single exchange constant matched to experiment.
机译:我们介绍了一种方法来测试理论模型对超薄磁性膜中交换耦合常数的层依赖性。该方法基于使用高分辨率电子能量损失谱仪观察高能和高动量驻波模式的方法。实验数据显示了沉积在Cu(100)上的5-8层fcc钴。通过与两项理论研究进行比较说明了该方法的功效,两项理论研究预测了关于表面附近的层间和层内交换耦合常数之比的相当不同的结果。只有具有较大层间耦合的理论才能在色散曲线的层依赖性中显示出足够的能量散布,以匹配实验数据。我们进一步讨论了简单的最近邻海森堡模型取得惊人成功的原因,该模型具有与实验匹配的单个交换常数。

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