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首页> 外文期刊>Physical Review, B. Condensed Matter >Spin-polarized electron momentum density distributions in Pd1-xCox alloys - art. no. 024442
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Spin-polarized electron momentum density distributions in Pd1-xCox alloys - art. no. 024442

机译:Pd1-xCox合金中的自旋极化电子动量密度分布-艺术没有。 024442

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摘要

The spin-polarized momentum densities of disordered single-crystal Pd1-xCox have been studied using the magnetic Compton scattering technique, for the compositions x = 0.6 and 0.28. Magnetic Compton profiles have been measured along the three principle crystallographic directions in each sample, and compared with theoretical profiles calculated using the Korringa-Kohn-Rostoker coherent- potential approximation method. The calculated and measured spin-polarized momentum distributions, as revealed by their magnetic Compton profiles, are in excellent agreement. However the calculated spin moment for the composition with x = 0.6 is some 10% smaller than that measured experimentally, and for x = 0.28, the deviation becomes 15%. These differences are attributed to the effect of order in the samples, which becomes increasingly important in the Pd-rich side of the phase diagram. The orbital component to the magnetization has been determined as 0.08 and 0.18mu(B) for Pd0.4Co0.6 and Pd0.72Co0.28, respectively. [References: 34]
机译:对于x = 0.6和0.28的成分,已经使用磁康普顿散射技术研究了无序单晶Pd1-xCox的自旋极化动量密度。沿每个样品的三个主要晶体学方向测量了磁性康普顿轮廓,并将其与使用Korringa-Kohn-Rostoker相干势近似方法计算的理论轮廓进行了比较。由其磁性康普顿分布图揭示的计算和测量的自旋极化动量分布非常吻合。但是,对于x = 0.6的组合物,计算出的自旋矩比实验测得的小约10%,而对于x = 0.28,其偏差变为15%。这些差异归因于样品中的有序效应,这在相图的富Pd侧变得越来越重要。对于Pd0.4Co0.6和Pd0.72Co0.28,磁化强度的轨道分量分别确定为0.08和0.18mu(B)。 [参考:34]

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