论文标题
相关的Weyl Magnet Mn $ _3 $ SN
Chiral-anomaly-driven magnetotransport in the correlated Weyl magnet Mn$_3$Sn
论文作者
论文摘要
在强烈相关的材料中,对拓扑状态的追求具有挑战性,但从基本研究和应用的角度来看,至关重要。手性抗铁磁铁MN $ _3 $ SN中的磁性Weyl半分(WSM)状态具有强烈的电子相关性,提供了一个有趣的竞技场,用于探索Weyl Fermions与相关物理学之间的相互作用。 WSM状态的一个突出特征是手性异常,但是电子相关性对手性异常的潜在影响仍未探索。在这里,我们报告了一项全面研究,对单晶Mn $ _ {3+X} $ sn $ _ {1-x} $具有三种不同的Mn掺杂水平($ x = 0.053 $,0.070和0.090)的平面磁磁管属性属性。除了转移相对于Weyl节点的化学电位外,多余的MN导致玻璃状铁磁行为和围绕效应。因此,对MN掺杂水平的系统调整使我们能够研究自旋 - 裂开散射,相关效应和手性异常之间的相互作用。我们确定了所有三种掺杂水平的负纵向磁势和平面霍尔的效应,表明手性异常持续存在很强的相关性。
The quest for topological states in strongly correlated materials is challenging but essential from fundamental research and application perspectives. The magnetic Weyl semimetal (WSM) state in the chiral antiferromagnet Mn$_3$Sn emerges with strong electronic correlations, offering an intriguing arena for exploring the interplay between Weyl fermions and correlation physics. One prominent characteristic of the WSM state is the chiral anomaly, yet the potential effects of electronic correlations on the chiral anomaly remain unexplored. Here, we report a comprehensive study of the in-plane magnetotransport properties of single-crystal Mn$_{3+x}$Sn$_{1-x}$ with three different Mn doping levels ($x=0.053$, 0.070, and 0.090). The excess Mn leads to glassy ferromagnetic behavior and the Kondo effect, aside from shifting the chemical potential relative to the Weyl nodes. Thus, systematic tuning of the Mn doping level enables us to study the interplay between the spin-fluctuation scatterings, the correlation effect, and the chiral anomaly. We identify negative longitudinal magnetoresistance and planar Hall effect specific to the chiral anomaly for all three doping levels, indicating that the chiral anomaly persists in the presence of strong correlations.