论文标题
磁场诱导的非平凡电子状态在近野晶格半分CESB中
Magnetic-field-induced nontrivial electronic state in the Kondo-lattice semimetal CeSb
论文作者
论文摘要
电子相关性和自旋轨道耦合的协同效应是拓扑材料中的新主题。这个快速发展的区域的核心是密切相关的厚处系统的原型。最近,有人提出了一些基于CE的化合物来富含有趣的拓扑性质,其中CESB的电子特性仍在争论中。在本文中,我们报告了一项结合磁性和电子传输测量值以及该化合物的电子带结构计算的全面研究,以识别其拓扑性质。在高场的磁化和磁化磁性中清楚地观察到了量子振荡,从中可以识别出一个具有非平凡浆果相的袋。角依赖性的磁倍率表明该袋在本质上是拉长的,并且对应于Labi中观察到的电子袋。第一原则计算进一步证实了CESB的非平凡电子结构,这是由完全极化的铁磁状态下的自旋分裂引起的。这些特征表明,磁场可以在该典型的近代半学中诱导非平凡的拓扑电子状态。
Synergic effect of electronic correlation and spin-orbit coupling is an emerging topic in topological materials. Central to this rapidly developing area are the prototypes of strongly correlated heavy-fermion systems. Recently, some Ce-based compounds are proposed to host intriguing topological nature, among which the electronic properties of CeSb are still under debate. In this paper, we report a comprehensive study combining magnetic and electronic transport measurements, and electronic band structure calculations of this compound to identify its topological nature. Quantum oscillations are clearly observed in both magnetization and magnetoresistance at high fields, from which one pocket with a nontrivial Berry phase is recognized. Angular-dependent magnetoresistance shows that this pocket is elongated in nature and corresponds to the electron pocket as observed in LaBi. Nontrivial electronic structure of CeSb is further confirmed by first-principle calculations, which arises from spin splitting in the fully polarized ferromagnetic state. These features indicate that magnetic-field can induce nontrivial topological electronic states in this prototypical Kondo semimetal.