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首页> 外文期刊>Physics of the solid state >Magnetic moment of iron atoms in Fe-Al body-centered cubic alloys as a function of the nearest environment
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Magnetic moment of iron atoms in Fe-Al body-centered cubic alloys as a function of the nearest environment

机译:Fe-Al体心立方合金中铁原子的磁矩与最近环境的关系

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摘要

The Fe-Al systems in the concentration range from 29 to 44 at. % Al are investigated in terms of the density functional theory. It is shown that, in the system under consideration, there can exist three magnetic states with close energies. Two of these three magnetic states have collinear magnetic moments (the ferromagnetic and antiferromagnetic states), and the third is a spin-spiral state. In collinear magnetic structures, the local magnetic moments are determined by the nearest chemical environment and, in the antiferromagnetic state, the iron atoms surrounded by a large number of aluminum atoms in their environment have a negative magnetic moment. The results obtained substantiate the applicability of modified models of the Jaccarino-Walker type for the interpretation of the experimental data obtained for Fe-Al alloys. The results of the calculations also indicate a significant role of Stoner excitations in the formation of magnetic order in these alloys.
机译:Fe-Al系统的浓度范围为29至44 at。根据密度泛函理论研究%Al。结果表明,在所考虑的系统中,可以存在三种具有紧密能量的磁态。这三个磁状态中的两个具有共线磁矩(铁磁和反铁磁状态),第三个是自旋螺旋状态。在共线磁性结构中,局部磁矩由最近的化学环境决定,在反铁磁状态下,周围环境中被大量铝原子包围的铁原子具有负磁矩。获得的结果证实了Jaccarino-Walker类型的修改模型对解释Fe-Al合金获得的实验数据的适用性。计算结果还表明,斯托纳激发在这些合金的磁序形成中起着重要作用。

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