论文标题
NDSB跨磁过渡的复杂电子结构演变
Complex electronic structure evolution of NdSb across the magnetic transition
论文作者
论文摘要
具有极端磁性的磁场状态的稀有地球剂(REM)家族已将自己确立为发现有趣的拓扑阶段的富有成果的游乐场。在这里,通过使用基于第一原理密度的基于功能理论的建模的高分辨率角度分辨光谱光谱,我们检查了整个磁性转变的候选REM DIRAC半学NDSB的电子结构的演变。已经观察到了区域中心附近的一个复杂的天使翼样带结构,并在区域角处观察到了三个类似弧形的特征。该区域中心周围的巡回段的这种戏剧性重建被证明是由磁性转变驱动的:特别是,伽马点处的ND 5D电子带回折,并与抗firomagnetic相中的SB 5P孔带杂交。我们的研究表明,抗铁磁性在REM家族的电子结构中起复杂的作用。
The rare-earth monopnictide (REM) family, which hosts magnetic ground states with extreme magnetoresistance, has established itself as a fruitful playground for the discovery of interesting topological phases. Here, by using high-resolution angle-resolved photoemission spectroscopy complemented by first-principles density functional-theory based modeling, we examine the evolution of the electronic structure of the candidate REM Dirac semimetal NdSb across the magnetic transition. A complex angel-wing-like band structure near the zone center and three arc-like features at the zone corner have been observed. This dramatic reconstruction of the itinerant bands around the zone center is shown to be driven by the magnetic transition: Specifically,, the Nd 5d electron band backfolds at the Gamma point and hybridizes with the Sb 5p hole bands in the antiferromagnetic phase. Our study indicates that antiferromagnetism plays an intricate role in the electronic structure of the REM family.