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首页> 外文期刊>Journal of magnetism and magnetic materials >Magnetic and electronic studies of LaFe_(13-x)Si_x compounds with 1.3≤x≤1.69
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Magnetic and electronic studies of LaFe_(13-x)Si_x compounds with 1.3≤x≤1.69

机译:1.3≤x≤1.69的LaFe_(13-x)Si_x化合物的磁性和电子学研究

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摘要

We have studied the magnetization of fine crystalline LaFe_(13-x)Si_x compounds with 1.3≤x≤1.69 under magnetic fields up to 10 T. The experimental magnetization measurements were interpreted in the framework of a random magnetic anisotropy (RMA) model. The results demonstrate that it is possible to extend the application of RMA to the fine crystallinestate of the compounds. From the analysis of the approach to saturation magnetization some fundamental parameters have been extracted quantifying the anisotropy forces. In addition, first-principles spin-density functional calculations, using the Full Potential Linear Augmented Plane Waves (FLAPW) method were performed to investigate both the electronic and magnetic structures and computed magnetic moments are discussed and compared with available experimental data from magnetization measurements and neutron diffraction results.
机译:我们已经研究了在高达10 T的磁场下1.3≤x≤1.69的LaFe_(13-x)Si_x精细晶体化合物的磁化强度。在随机磁各向异性(RMA)模型的框架内解释了实验磁化强度。结果表明,可以将RMA的应用扩展到化合物的精细结晶状态。通过对饱和磁化方法的分析,提取了一些基本参数来量化各向异性力。此外,使用全势线性增强平面波(FLAPW)方法进行了第一性原理自旋密度函数计算,以研究电子结构和磁结构,并讨论了计算出的磁矩,并将其与磁化强度测量的可用实验数据进行了比较。中子衍射结果。

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