论文标题
kagom $ \急性{e} $ antiferRomagnet u $ _3 $ ru $ _4 $ al $ al $ _ {12} $中的大型可调节异常霍尔效应
Large Tunable Anomalous Hall Effect in the Kagom$\acute{e}$ Antiferromagnet U$_3$Ru$_4$Al$_{12}$
论文作者
论文摘要
磁系统中的浆果曲率由于通过磁性结构的拓扑特征的潜在可调性引起了人们的兴趣。 $ f $ - 电源具有较大的自旋轨道耦合,丰富的非磁性磁性结构和高电子可调性,是寻找可调拓扑特性的有吸引力的候选者。在这项研究中,我们测量了扭曲的Kagom $ \ acute {e} $ heavy fermion antiferromagnet u $ _3 $ ru $ ru $ _4 $ _4 $ al $ al $ _ {12} $中的异常大厅效应(AHE)。在高场中,大型的内在AHE揭示了大浆果曲率的存在。此外,获得较大浆果曲率所需的字段在$ b \ parallel A $和$ b \ parallel A^*$之间显着差异,这提供了控制该系统中拓扑响应的机制。理论计算表明,这种敏感性可能是由于电子结构的繁重特征。这些结果阐明了磁性沮丧的重型费米昂材料中强相关带结构的浆果曲率,但也强调了5 $ f $ - 电子作为研究现场调节拓扑状态的理想游乐场。
The Berry curvature in magnetic systems is attracting interest due to the potential tunability of topological features via the magnetic structure. $f$-electrons, with their large spin-orbit coupling, abundance of non-collinear magnetic structures and high electronic tunability, are attractive candidates to search for tunable topological properties. In this study, we measure anomalous Hall effect (AHE) in the distorted kagom$\acute{e}$ heavy fermion antiferromagnet U$_3$Ru$_4$Al$_{12}$. A large intrinsic AHE in high fields reveals the presence of a large Berry curvature. Moreover, the fields required to obtain the large Berry curvature are significantly different between $B \parallel a$ and $B \parallel a^*$, providing a mechanism to control the topological response in this system. Theoretical calculations illustrate that this sensitivity may be due to the heavy fermion character of the electronic structure. These results shed light on the Berry curvature of a strongly correlated band structure in magnetically frustrated heavy fermion materials, but also emphasize 5$f$-electrons as an ideal playground for studying field-tuned topological states.