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An Ab Initio Study of Pressure-Induced Changes of Magnetism in Austenitic Stoichiometric Ni

机译:AB初始研究奥氏体化学计量Ni的磁力诱导变化

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摘要

We have performed a quantum-mechanical study of a series of stoichiometric Ni2MnSn structures focusing on pressure-induced changes in their magnetic properties. Motivated by the facts that (i) our calculations give the total magnetic moment of the defect-free stoichiometric Ni2MnSn higher than our experimental value by 12.8% and (ii) the magnetic state is predicted to be more sensitive to hydrostatic pressures than seen in our measurements, our study focused on the role of point defects, in particular Mn-Ni, Mn-Sn and Ni-Sn swaps in the stoichiometric Ni2MnSn. For most defect types we also compared states with both ferromagnetic (FM) and anti-ferromagnetic (AFM) coupling between (i) the swapped Mn atoms and (ii) those on the Mn sublattice. Our calculations show that the swapped Mn atoms can lead to magnetic moments nearly twice smaller than those in the defect-free Ni2MnSn. Further, the defect-containing states exhibit pressure-induced changes up to three times larger but also smaller than those in the defect-free Ni2MnSn. Importantly, we find both qualitative and quantitative differences in the pressure-induced changes of magnetic moments of individual atoms even for the same global magnetic state. Lastly, despite of the fact that the FM-coupled and AFM-coupled states have often very similar formation energies (the differences only amount to a few meV per atom), their structural and magnetic properties can be very different.
机译:我们已经进行了一系列化学计量的Ni2MNSN结构的量子力学研究,这些结构聚焦在其磁性特性的压力诱导的变化上。 (i)我们的计算提供了比我们的实验值高12.8%和(ii)的缺陷化学计量Ni2mnsn的总磁矩,预测磁性对静水压压力比我们所看到的更敏感测量,我们的研究侧重于点缺陷的作用,特别是Mn-Ni,Mn-Sn和Ni-Sn在化学计量Ni2mnsn中渗透。对于大多数缺陷类型,我们还将状态与(I)之间的铁磁性(FM)和抗铁磁(AFM)耦合进行了比较了(i)型Mn原子和(ii)的抗铁磁(AFM)耦合。我们的计算表明,交换的Mn原子可以导致磁矩几乎比无缺陷Ni2mnsn中的磁性矩小。此外,含有缺陷的状态表现出高达三倍的压力诱导的变化,但也小于无缺陷Ni2mnsn中的变化。重要的是,我们甚至在相同的全球磁力状态下发现了个体原子的磁矩的定性和定量差异。最后,尽管FM耦合和AFM耦合状态通常具有非常相似的形成能量(仅差异仅为每只原子的差异),但它们的结构和磁性可能会非常不同。

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