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Permanent magnetism of intermetallic compounds between light and heavy transition-metal elements

机译:轻质和重质过渡金属元素之间的金属间化合物的永磁性

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摘要

First principle calculations are used to investigate the intrinsic magnetic properties of intermetallic alloys of the type XMn, where X is a 4d or 5d element and M is Fe or Co. Emphasis is on the hexagonal C14 Laves-phase 1:2 and 1:5 alloys, the latter crystallizing in the CaCu5 structure. These series are of interest in permanent magnetism from fundamental and practical viewpoints, respectively. In the former, the unit cells form a prototypical motif where a heavy atom with high spin-orbit coupling and magnetocrystalline anisotropy is surrounded by many somewhat smaller M atoms with high magnetization, and the latter are Laves-phase derivatives of renewed interest in permanent mag-netism. Our DFT calculations predict magnetic moments, magnetizations and anisotropies, as well as formation energies. The results are analyzed across the 4d and 5d series, especially with respect to hybridization effects between 3d and 4d/5d bands.
机译:第一原理计算用于研究XMn型金属间合金的固有磁性能,其中X为4d或5d元素,M为Fe或Co。重点是六角形的C14 Laves相1:2和1:5合金,后者在CaCu5结构中结晶。从基本和实际的观点来看,这些系列分别对永磁体感兴趣。在前者中,晶胞形成了一个典型的基序,其中具有高自旋轨道耦合和磁晶各向异性的重原子被许多具有较高磁化强度的较小的M原子包围,而后者是对永磁体重新感兴趣的拉夫斯相衍生物。 -netism。我们的DFT计算可预测磁矩,磁化强度和各向异性以及地层能量。分析了4d和5d系列的结果,尤其是3d和4d / 5d波段之间的杂交效果。

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