论文标题

通过钴取代的范德华金属fe5gete2中调谐磁顺序

Tuning Magnetic Order in the van der Waals Metal Fe5GeTe2 by Cobalt Substitution

论文作者

May, Andrew F., Du, Mao-Hua, Cooper, Valentino R., McGuire, Michael A.

论文摘要

Fe5-Xgete2是一种范德华的材料,其报告最高的库里温度之一,$ t_c $ 〜310k。在这项研究中,理论计算和实验被用来证明磁接地态对局部原子布置和层间堆叠非常敏感。发现钴取代是操纵磁性的有效方法,同时还增加了排序温度。特别是,高达30%的钴取代可增强$ t_c $并改变磁各向异性,而大约50%的钴取代产生了抗铁磁状态。单晶X射线衍射证明了增加钴浓度后的结构变化,在母体材料中观察到菱形脑细胞,相对于铁,观察到〜46%钴含量的原始细胞。第一原理计算表明,这是高钴含量的组合以及产生抗磁性顺序的原始层堆叠的伴随变化。这些结果说明了Fe5-Xgete2对组成和结构的敏感性,并强调了结构秩序/混乱和层堆叠在可裂解的磁性材料中的重要作用。

Fe5-xGeTe2 is a van der Waals material with one of the highest reported bulk Curie temperatures, $T_C$ ~ 310K. In this study, theoretical calculations and experiments are utilized to demonstrate that the magnetic ground state is highly sensitive to local atomic arrangements and the interlayer stacking. Cobalt substitution is found to be an effective way to manipulate the magnetic properties while also increasing the ordering temperature. In particular, cobalt substitution up to 30% enhances $T_C$ and changes the magnetic anisotropy, while approximately 50% cobalt substitution yields an antiferromagnetic state. Single crystal x-ray diffraction evidences a structural change upon increasing the cobalt concentration, with a rhombohedral cell observed in the parent material and a primitive cell observed for ~46% cobalt content relative to iron. First principles calculations demonstrate that it is a combination of high cobalt content and the concomitant change to primitive layer stacking that produces antiferromagnetic order. These results illustrate the sensitivity of magnetism in Fe5-xGeTe2 to composition and structure, and emphasize the important role of structural order/disorder and layer stacking in cleavable magnetic materials.

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