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First-principles study of magnetic interactions in $3d$ transition metal-doped phase-change materials

机译:过渡金属掺杂的3d $相变材料中磁相互作用的第一性原理研究

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摘要

Recently, magnetic phase-change materials have been synthesized experimentally by doping with 3d transition metal impurities. Here, we investigate the electronic structure and the magnetic properties of the prototypical phase-change material Ge2Sb2Te5 (GST) doped with V, Cr, Mn, and Fe by density functional calculations. Both the supercell method and the coherent potential approximation (CPA) are employed to describe this complex substitutionally disordered system. As regards the first approach, we consider a large unit cell containing 1000 sites to model the random distribution of the cations and of the impurities in doped cubic GST. Such a large-scale electronic structure calculation is performed using the program kkrnano, where the full potential screened Korringa-Kohn-Rostoker Green's function method is optimized by a massively parallel linear scaling (order-N) all-electron algorithm. Overall, the electronic structures and magnetic exchange coupling constants calculated by kkrnano agree quite well with the CPA results. We find that ferromagnetic states are favorable in the cases of V and Cr doping, due to the double exchange mechanism, whereas antiferromagnetic superexchange interactions appear to be dominant for Fe- and Mn-doped GST. The ferromagnetic interaction is particularly strong in the case of Cr. As a result, high Curie temperatures close to room temperatures are obtained for large Cr concentrations of 15%.
机译:最近,已经通过掺杂3d过渡金属杂质实验合成了磁性相变材料。在这里,我们通过密度泛函计算研究了掺杂V,Cr,Mn和Fe的典型相变材料Ge2Sb2Te5(GST)的电子结构和磁性。超级电池方法和相干势近似(CPA)均用于描述该复杂的取代无序系统。关于第一种方法,我们考虑一个包含1000个位点的大型晶胞,以模拟掺杂立方GST中阳离子和杂质的随机分布。使用程序kkrnano进行了如此大规模的电子结构计算,其中通过大规模并行线性缩放(N阶)全电子算法优化了全电位筛选Korringa-Kohn-Rostoker Green的函数方法。总体而言,由kkrnano计算的电子结构和磁交换耦合常数与CPA结果非常吻合。我们发现,由于双重交换机制,在V和Cr掺杂的情况下,铁磁态是有利的,而铁和锰掺杂的GST则反铁磁超交换相互作用似乎占主导。在Cr的情况下,铁磁相互作用特别强。结果,对于15%的较大Cr浓度,可获得接近室温的高居里温度。

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