论文标题
SMBI中非平凡的浆果阶段和贡献物理学的证据
Evidence of non-trivial Berry phase and Kondo physics in SmBi
论文作者
论文摘要
实现具有非平凡拓扑结构(例如DIRAC和WEYL半法)的半学的实现,在研究这些量子材料的研究中提供了增强。电子相关性的存在使系统由于电荷载体的散射增强,近托筛选等的散射而变得更加异国情调。在这里,我们研究了单晶,SMBI的电子特性,SMBI采用了各种最先进的体积测量状态。磁化数据揭示了两个磁过渡。在较低温度(= 7 K)下的肾脏温度约为9 k的抗铁磁阶,第二个磁性转变。电阻率数据显示,近距系统的典型上涨,发现估计的近藤温度接近Neel温度。高质量的晶体使我们能够在磁化数据中发现量子振荡的签名,即使在低磁场下也是如此。使用Landau级别的粉丝图分析,为费米口袋确定了一个非平凡的浆果相,揭示了该材料中的拓扑特征。这些结果证明了在抗磁磁状态下的Fermiology的一个独特例子,并通过临床相互作用的相互作用,拓扑顺序和磁性来探索新的范式,以探索相关拓扑金属中的dirac fermion物理。
Realization of semimetals with non-trivial topologies such as Dirac and Weyl semimetals, have provided a boost in the study of these quantum materials. Presence of electron correlation makes the system even more exotic due to enhanced scattering of charge carriers, Kondo screening etc. Here, we studied the electronic properties of single crystalline, SmBi employing varied state of the art bulk measurements. Magnetization data reveals two magnetic transitions; an antiferromagnetic order with a Neel temperature of ~ 9 K and a second magnetic transition at a lower temperature (= 7 K). The electrical resistivity data shows an upturn typical of a Kondo system and the estimated Kondo temperature is found to be close to the Neel temperature. High quality of the crystal enabled us to discover signature of quantum oscillation in the magnetization data even at low magnetic field. Using a Landau level fan diagram analysis, a non-trivial Berry phase is identified for a Fermi pocket revealing the topological character in this material. These results demonstrate an unique example of the Fermiology in the antiferromagnetic state and opens up a new paradigm to explore the Dirac fermion physics in correlated topological metal via interplay of Kondo interaction, topological order and magnetism.