Departamento de Física de la Tierra, Astronomía y Astrofísica I, Universidad Complutense de Madrid, E-28040 Madrid, Spain.
J Phys Condens Matter. 2013 Jan 23;25(3):035601. doi: 10.1088/0953-8984/25/3/035601. Epub 2012 Dec 6.
The magnetic properties, electronic band structure and Fermi surfaces of the hexagonal Cr(2)GeC system have been studied by means of both generalized gradient approximation (GGA) and the +U corrected method (GGA + U). The effective U value has been computed within the augmented plane wave theoretical scheme by following the constrained density functional theory formalism of Anisimov and Gunnarsson (1991 Phys. Rev. B 45 7570-74). On the basis of our GGA + U calculations, a compensated antiferromagnetic spin ordering of Cr atoms has been found to be the ground-state solution for this material, where a Ge-mediated super-exchange coupling is responsible for an opposite spin distribution between the ABA stacked in-plane Cr-C networks. Structural properties have also been tested and found to be in good agreement with the available experimental data. Topological analysis of Fermi surfaces has been used to qualitatively address the electronic transport properties of Cr(2)GeC, and found an important asymmetrical carrier-type distribution within the hexagonal crystal lattice. We conclude that an appropriate description of the strongly correlated Cr d electrons is an essential issue for interpreting the material properties of this unusual Cr-based MAX phase.
采用广义梯度近似(GGA)和加 U 修正方法(GGA+U)研究了六方 Cr(2)GeC 体系的磁性、电子能带结构和费米面。通过遵循 Anisimov 和 Gunnarsson(1991 Phys. Rev. B 45 7570-74)的约束密度泛函理论形式,在增广平面波理论方案中计算了有效 U 值。基于我们的 GGA+U 计算,发现 Cr 原子的补偿反铁磁自旋有序是该材料的基态解,其中 Ge 介导的超交换耦合负责 ABA 堆叠的面内 Cr-C 网络之间的相反自旋分布。结构性质也经过了测试,并且与可用的实验数据非常吻合。费米面的拓扑分析用于定性地研究 Cr(2)GeC 的电子输运性质,并且在六方晶格中发现了重要的非对称载流子型分布。我们得出结论,对强关联 Cr d 电子的适当描述是解释这种不寻常的 Cr 基 MAX 相材料性质的关键问题。