Center for Correlated Matter and Department of Physics, Zhejiang University, 310058, Hangzhou, China.
Department of Physics, Hangzhou Normal University, 310036, Hangzhou, China.
Nat Commun. 2018 Nov 5;9(1):4622. doi: 10.1038/s41467-018-06782-1.
The manifestation of Weyl fermions in strongly correlated electron systems is of particular interest. We report evidence for Weyl fermions in the heavy fermion semimetal YbPtBi from electronic structure calculations, angle-resolved photoemission spectroscopy, magnetotransport and calorimetric measurements. At elevated temperatures where 4f-electrons are localized, there are triply degenerate points, yielding Weyl nodes in applied magnetic fields. These are revealed by a contribution from the chiral anomaly in the magnetotransport, which at low temperatures becomes negligible due to the influence of electronic correlations. Instead, Weyl fermions are inferred from the topological Hall effect, which provides evidence for a Berry curvature, and a cubic temperature dependence of the specific heat, as expected from the linear dispersion near the Weyl nodes. The results suggest that YbPtBi is a Weyl heavy fermion semimetal, where the Kondo interaction renormalizes the bands hosting Weyl points. These findings open up an opportunity to explore the interplay between topology and strong electronic correlations.
在强关联电子系统中 Weyl 费米子的表现引起了特别的关注。我们通过电子结构计算、角分辨光电子能谱、磁输运和量热测量,在重费米子半金属 YbPtBi 中报告了 Weyl 费米子的证据。在高温下,4f 电子局域化,存在三重简并点,在外磁场中产生 Weyl 节点。这可以通过磁输运中的手征反常贡献来揭示,由于电子相关的影响,在低温下该贡献变得可以忽略不计。相反,Weyl 费米子是从拓扑霍尔效应推断出来的,该效应提供了 Berry 曲率的证据,以及比热的立方温度依赖性,这与 Weyl 节点附近的线性色散一致。这些结果表明 YbPtBi 是一种 Weyl 重费米子半金属,其中 Kondo 相互作用对承载 Weyl 点的能带进行了重整化。这些发现为探索拓扑和强电子关联之间的相互作用提供了机会。