论文标题
依赖场的shubnikov-de haas振荡在铁磁性Weyl semimetal co3sn2s2中
Field-dependent Shubnikov-de Haas oscillations in ferromagnetic Weyl semimetal Co3Sn2S2
论文作者
论文摘要
我们报告了一项关于铁磁性Weyl Semimetal Co $ _3 $ sn $ _2 $ S $ _2 $的高质量单晶的Shubnikov-de Haas振荡的研究。在我们的实验中解决的费米表面是三维的,反映了潜在的三角形晶体学对称性。结合密度功能理论计算,我们确定系统中的大多数费米表面(电子和孔性质)都是由(自旋轨道损失)镜面保护节环的强能量分散引起的。我们观察到,平面磁场会诱导费米表面的连续演变,而与垂直于Kagome晶格平面的场相比,其影响很小。与系统的易于轴各向异性一起观看,我们的观察结果揭示了Co $ _3 $ sn $ _2 $ _2 $ s $ _2 $的电子结构的演变 - 包括韦尔点,并带有铁磁瞬间方向。通过对CO $ _3 $ sn $ _2 $ S $ _2 $的案例研究,我们的结果提供了通过自由度和电子带奇异性磁性磁性度之间的自旋轨道耦合提供具体的实验证据,这是在半金属和金属磁性拓扑系统中长期以来预期的。
We report a study of Shubnikov-de Haas oscillations in high quality single crystals of ferromagnetic Weyl semimetal Co$_3$Sn$_2$S$_2$. The Fermi surfaces resolved in our experiments are three-dimensional and reflect an underlying trigonal crystallographic symmetry. Combined with density functional theoretical calculations, we identify that the majority of the Fermi surfaces in the system -- of both electron and hole nature -- arise from the strong energy dispersion of the (spin-orbit gapped) mirror-protected nodal rings. We observe that an in-plane magnetic field induces a continuous evolution of Fermi surfaces, in contrast to field perpendicular to the kagome lattice planes which has little effect. Viewed alongside the easy-axis anisotropy of the system, our observation reveals an evolution of the electronic structure of Co$_3$Sn$_2$S$_2$ -- including the Weyl points -- with the ferromagnetic moment orientation. Through the case study of Co$_3$Sn$_2$S$_2$, our results provide concrete experimental evidence of an anisotropic interplay via spin-orbit coupling between the magnetic degrees of freedom and electronic band singularities, which has long been expected in semimetallic and metallic magnetic topological systems.