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An Ab Initio Study of Vacancies in Disordered Magnetic Systems: A Case Study of Fe-Rich Fe-Al Phases

机译:从头开始研究无序磁系统中的空位:以富铁的Fe-Al相为例

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摘要

We have performed quantum-mechanical calculations to examine the impact of disorder on thermodynamic, structural and electronic (magnetic) properties of Fe-Al systems with vacancies. A series of supercells was used and their properties were computed employing density-functional theory (DFT) as implemented in the VASP package. Our case study is primarily aimed at a disordered solid solution Fe81.25Al18.75 but we have compared our results also with those obtained for the ordered Fe3Al intermetallic compound for which experimental data exist in literature. Both phases are found in Fe-Al-based superalloys. The Fe-18.75at.%Al solid solution was simulated using special quasirandom structures (SQS) in three different disordered states with a different distribution of Al atoms. In particular, we have considered a general disordered case (an A2-like variant), the case without the first nearest neighbor Al-Al pairs (a B2-like distribution of atoms) and also the case without both the first and second nearest neighbor Al-Al pairs (the D03-like variant, in fact, an Fe-rich Fe3Al phase). The vacancy formation energies as well as the volumes of (fully relaxed) supercells with vacancies showed a large scatter for the disordered systems. The vacancy formation energies decrease with increasing concentration of Al atoms in the first coordination shell around the vacancy (an anti-correlation) for all disordered cases studied. The computed volumes of vacancies were found significantly lower (by 25–60%) when compared with the equilibrium volume of the missing atoms in their elemental states. Lastly, we have analyzed interactions between the vacancies and the Fe atoms and evaluated vacancy-induced changes in local magnetic moments of Fe atoms.
机译:我们已经进行了量子力学计算,以研究无序对空位Fe-Al系统的热力学,结构和电子(磁性)性能的影响。使用了一系列超级电池,并使用VASP软件包中实现的密度泛函理论(DFT)计算了它们的性能。我们的案例研究主要针对无序的固溶体Fe < msub> 81.25 Al 18.75 < / msub> ,但我们还将我们的结果与从有序Fe 3 存在实验数据的金属间化合物在文学中。在铁铝基高温合金中都发现了这两个相。 Fe-18.75at。%Al固溶体是使用特殊的拟随机结构(SQS)在具有不同Al原子分布的三种不同无序状态下模拟的。特别地,我们考虑了一般的无序情况(类似A2的变体),没有第一近邻Al-Al对的情况(原子的B2分布)以及没有第一和第二近邻的情况Al-Al对(D0 <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm4”溢出=“ scroll”> 3 型变体,实际上是富铁的Fe 3 < / math> Al相)。空位形成能以及具有空位的(完全弛豫的)超级电池的体积显示出对无序系统的大分散。对于所有研究的无序病例,空位形成能随着空位周围第一个配位壳中Al原子浓度的增加而降低(反相关)。与元素状态中缺失原子的平衡量相比,计算出的空位量显着降低(降低了25-60%)。最后,我们分析了空位与Fe原子之间的相互作用,并评估了空位引起的Fe原子局部磁矩的变化。

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