Institute of Applied Physics, Vienna University of Technology, Makartvilla, Gusshausstraße 25a, A-1060 Vienna, Austria.
J Phys Condens Matter. 2012 Jan 11;24(1):016001. doi: 10.1088/0953-8984/24/1/016001. Epub 2011 Dec 2.
The investigation of the electronic structure and magnetism for the compound MnB(2) with crystal structure type AlB(2) has been revisited to resolve contradictions between various experimental and theoretical results present in the literature. We find that MnB(2) exhibits an interesting example of a Kübler's covalent magnetism (Williams et al 1981 J. Appl. Phys. 52 2069). The covalent magnetism also appears to be the source of some disagreement between the calculated values of the magnetic moments and those given by neutron diffraction experiments. We show that this shortcoming is due to the atomic sphere approximation applied in earlier calculations. The application of the disordered local moment approach and the calculation of the inter-atomic exchange interactions within the Liechtenstein formalism reveal strong local moment antiferromagnetism with a high Néel temperature predicted from Monte Carlo simulations. A fully relativistic band structure calculation and then the application of the torque method yields a strong in-plane anisotropy of the Mn magnetic moments. The agreement of these results with neutron diffraction studies rules out any possible weak itinerant electron magnetism scenarios as proposed earlier for MnB(2).
我们重新研究了具有 AlB2 晶体结构类型的化合物 MnB2 的电子结构和磁性,以解决文献中存在的各种实验和理论结果之间的矛盾。我们发现 MnB2 表现出有趣的 Kübler 共价磁性的例子(Williams 等人,1981 年,J.Appl.Phys.52,2069)。共价磁性似乎也是计算磁矩值与中子衍射实验给出值之间存在一些分歧的原因。我们表明,这种缺陷是由于早期计算中应用了原子球近似。无序局域矩方法的应用以及 Liechtenstein 形式主义中原子间交换相互作用的计算,预测从蒙特卡罗模拟得出具有高奈尔温度的强局域磁矩反铁磁性。完全相对论能带结构计算,然后应用扭矩方法,得到 Mn 磁矩的强面内各向异性。这些结果与中子衍射研究的一致性排除了以前为 MnB2 提出的任何可能的弱巡游电子磁性情况。