论文标题
范德华(Van der Waals)的局部磁磁性签名Feromagnet Fe $ _3 $ gete $ _2 $
Spectroscopic Signature for Local-moment Magnetism in van der Waals Ferromagnet Fe$_3$GeTe$_2$
论文作者
论文摘要
Van der Waals Ferromagnet Fe $ _3 $ gete $ _2 $最近由于其相互缠绕的磁性,电子和拓扑特性而引起了广泛的研究关注。在这里,使用高分辨率角度分辨光发射光谱法,我们系统地研究了批量Fe $ _3 $ gete $ _2 $的电子结构的温度演化。我们观察到与AB-Initio计算相比,在很大程度上缩小了1.6倍的色散能带。向朝着225 K附近的铁磁过渡加热后,我们观察到在较大的能量范围内的准片剂相干性大量降低,这归因于系统中增强的磁波动。值得注意的是,电子频带几乎不会随温度的增加而移动,这偏离了巡回Stoner模型中的交换分裂图片。我们认为,尽管具有强烈的策划性质,但本地磁性时刻在Fe $ _3 $ gete $ _2 $的铁磁性中起着至关重要的作用。我们的结果为Fe $ _3 $ gete $ _2 $的电子和磁性特性提供了重要的见解,并阐明了对相关材料中巡回磁性的一般理解。
The van der Waals ferromagnet Fe$_3$GeTe$_2$ has recently attracted extensive research attention due to its intertwined magnetic, electronic and topological properties. Here, using high-resolution angle-resolved photoemission spectroscopy, we systematically investigate the temperature evolution of the electronic structure of bulk Fe$_3$GeTe$_2$. We observe largely dispersive energy bands that are narrowed by a factor of 1.6 compared with ab-initio calculation. Upon heating towards the ferromagnetic transition near 225 K, we observe a massive reduction of quasiparticle coherence in a large energy range, which is attributed to the enhanced magnetic fluctuation in the system. Remarkably, the electron bands barely shift with increasing temperature, which deviates from the exchange splitting picture within the itinerant Stoner model. We argue that the local magnetic moments play a crucial role in the ferromagnetism of Fe$_3$GeTe$_2$, despite its strongly itinerant nature. Our results provide important insights into the electronic and magnetic properties of Fe$_3$GeTe$_2$ and shed light on the generic understanding of itinerant magnetism in correlated materials.