论文标题

了解GD $ _6 $ FEBI $ _2 $磁铁的高订购温度:临界行为,电子结构和水晶场分析

Understanding high ordering temperature in Gd$_6$FeBi$_2$ magnet: critical behavior, electronic structure and crystal-field analysis

论文作者

Cui, Guoming, Ma, Huan, Wong, Kam Wa, Shek, Chan Hung, Shan, Guangcun, Zhang, Jiliang

论文摘要

据报道,GD6Febi2是唯一具有Ca的居里温度(TC)的室温磁铁。在具有结构性类型的数百种化合物中,有350 K,这使其在潜在应用中更具吸引力。为了揭示这种高序温度的起源,在这项工作中研究了GD6Febi2的关键行为,电子结构和晶体场效应。与先前的DFT计算一致的非curie-weiss promagnetic行为,晶体和电子结构分析支持了短距离GD-FE铁磁相互作用。与强大的TM-TM交换相互作用不同,GD-FE交换相互作用显示出对由远程交换相互作用确定的关键指数的影响有限,这似乎是基于RE-TM的合金中的一个常见特征,而没有TM-TM交换相互作用。但是,强GD-FE杂交减少了振动耦合对短距离交换相互作用的影响,从而允许高TC。基于晶体场分析,GD 4F电子带的扩展或分裂机制是针对GD6FEBI2和基于GD的基于GD6Febi2和GD基于非磁性元件的升高的另一个因素。还讨论了等物结构化合物之间的不同磁性行为,并讨论了带分裂和晶体场效应之间的关系。

Gd6FeBi2 is reported as the only one room-temperature magnet with a Curie temperature (Tc) of ca. 350 K among more than hundreds of compounds with its structural type, which makes it more attractive in potential applications. To reveal the origin of such high ordering temperature, critical behaviors, electronic structure and crystal-field effects of Gd6FeBi2 are investigated in this work. The short-range Gd-Fe ferrimagnetic interaction is supported by the non-Curie-Weiss paramagnetic behavior, crystal and electronic structure analyses, in agreement with previous DFT calculations. Unlike the strong TM-TM exchange interactions, the Gd-Fe exchange interaction shows limited influence on the critical exponents determined by long-range exchange interactions, which seems a common feature in RE-TM based alloys without TM-TM exchange interactions. However, the strong Gd-Fe hybridization reduces the influence of vibronic couplings on the short-range exchange interaction and thus allows a high Tc. The broadening or splitting mechanism of Gd 4f-electron bands is addressed based on crystal-field analysis and likely another factor for elevated Tc in Gd6FeBi2 and Gd-based compounds with non-magnetic elements. Different magnetic behaviors among isostructural compounds, and the relationship between the band splitting and crystal-field effects is also discussed.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源