论文标题
Kagome Fege中磁性和充电订单的交织
Intertwining of magnetism and charge ordering in kagome FeGe
论文作者
论文摘要
最近的实验报告了抗铁磁铁FEGE中的电荷密度波(CDW),但是电荷顺序的性质和相关的结构变形仍然难以捉摸。我们讨论FEGE的结构和电子特性。我们提出的基态相准确地捕获了通过扫描隧道显微镜获得的原子地形。我们表明,2 $ \ times $ 2 $ \ times $ 1 cdw可能是由六边形 - prism形的kagome州的费米表面筑巢产生的。发现FEGE在GE原子的位置而不是Kagome层中的Fe原子表现出畸变。使用深入的第一原理计算和分析建模,我们证明了这种非常规的失真是由这种kagome材料中的磁交换耦合和CDW相互作用的相互作用驱动的。 GE原子从原始位置移动也可以增强Fe Kagome层的磁矩。我们的研究表明,磁性kagome晶格为探索强电子相关性对基态的影响及其对材料中的运输,磁和光学响应的影响提供了材料候选者。
Recent experiments report a charge density wave (CDW) in the antiferromagnet FeGe, but the nature of the charge ordering and the associated structural distortion remains elusive. We discuss the structural and electronic properties of FeGe. Our proposed ground state phase accurately captures atomic topographies acquired by scanning tunneling microscopy. We show that the 2$\times$2$\times$1 CDW likely results from the Fermi surface nesting of hexagonal-prism-shaped kagome states. FeGe is found to exhibit distortions in the positions of the Ge atoms instead of the Fe atoms in the kagome layers. Using in-depth first-principles calculations and analytical modeling, we demonstrate that this unconventional distortion is driven by the intertwining of magnetic exchange coupling and CDW interactions in this kagome material. Movement of Ge atoms from their pristine positions also enhances the magnetic moment of the Fe kagome layers. Our study indicates that magnetic kagome lattices provide a material candidate for exploring the effects of strong electronic correlations on the ground state and their implications for transport, magnetic, and optical responses in materials.