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首页> 外文期刊>Physical review, B >Rare-earth/transition-metal magnets at finite temperature: Self-interaction-corrected relativistic density functional theory in the disordered local moment picture
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Rare-earth/transition-metal magnets at finite temperature: Self-interaction-corrected relativistic density functional theory in the disordered local moment picture

机译:有限温度稀土/过渡金属磁体:在无序的当地时刻校正相互作用的相对论密度功能理论

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摘要

Atomic-scale computational modeling of technologically relevant permanent magnetic materials faces two key challenges. First, a material's magnetic properties depend sensitively on temperature, so the calculations must account for thermally induced magnetic disorder. Second, the most widely used permanent magnets are based on rare-earth elements, whose highly localized 4f electrons are poorly described by standard electronic structure methods. Here, we take two established theories, the disordered local moment picture of thermally induced magnetic disorder and self-interaction-corrected density functional theory, and devise a computational framework to overcome these challenges. Using this approach, we calculate magnetic moments and Curie temperatures of the rare-earth cobalt (RECo5) family for RE = Y-Lu. The calculations correctly reproduce the experimentally measured trends across the series and confirm that, apart from the hypothetical compound EuCo5, SmCo5 has the strongest magnetic properties at high temperature. An order-parameter analysis demonstrates that varying the RE has a surprisingly strong effect on the Co-Co magnetic interactions determining the Curie temperature, even when the lattice parameters are kept fixed. We propose the origin of this behavior is a small contribution to the density from f-character electrons located close to the Fermi level.
机译:相关技术永磁材料的原子尺度的计算模型面临的两大主要挑战。首先,材料的磁性能敏感地依赖于温度,所以计算必须考虑热诱发的磁性障碍。其次,最广泛使用的永久磁铁是基于稀土类元素,其高度局部化的4f电子通过标准电子结构的方法是很差说明。在这里,我们需要两个建立的理论,热诱发的磁性紊乱和自身相互作用修正密度泛函理论的无序本地时刻的画面,并制订克服这些挑战的计算框架。使用这种方法,我们计算磁矩和稀土钴(RECo5)家族RE = Y-鲁居里温度。计算正确地再现跨串联并确认,除了假想化合物EuCo5,的SmCo5在高温下具有最强的磁特性的实验上测得的趋势。订单参数分析证明了改变RE对Co的Co磁性相互作用确定居里温度的意外强劲效果,即使当晶格参数保持固定。我们提出的这种行为起源是从靠近费米能级F-字符的电子密度小的贡献。

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