论文标题
多个Dirac节点和对称性受保护的Dirac节点线,在Orthorhombic $α$ -RHSI中
Multiple Dirac Nodes and Symmetry Protected Dirac Nodal Line in Orthorhombic $α$-RhSi
论文作者
论文摘要
由于其手性立方结构,已经预测并在过渡金属硅化物(如$β$ -RHSI)中预测并观察到异国多胎拓扑激发。在此,我们报告说,RHSI的拓扑特征也可以在其正交$α$ phase中观察到,它显示出多种类型的Dirac节点,非常接近Fermi级别($ \ VAREPSILON_F $),并且几乎没有拓扑既微不足道的载体。我们讨论使用组表示沿高对称线的对称分析,沿高对称线的频带连接性,频带结构以及狄拉克点和淋巴结线的性质,发生在$ \ varepsilon_f $附近。 de haas-van alphen效应(DHVA)表明费米表面与计算一致。我们发现一条椭圆形的节点线非常接近$ \ varepsilon_f $ award and&s $ s $ - $ k_y-k_z $ plane的$ s $点,该平面是由两个倒置迪拉克锥体的交点产生的。参与的KRAMERS归化带的两个狄拉克点相距仅5 meV,因此,可访问的磁场可能会引起上迪拉克锥的旋转伙伴与下迪拉克锥的旋转伙伴之间的交叉,可能会解释在磁性扭矩中观察到的异常。
Owing to their chiral cubic structure, exotic multifold topological excitations have been predicted and recently observed in transition metal silicides like $β$-RhSi. Herein, we report that the topological character of RhSi is also observed in its orthorhombic $α$-phase which displays multiple types of Dirac nodes very close to the Fermi level ($\varepsilon_F$) with the near absence of topologically trivial carriers. We discuss the symmetry analysis, band connectivity along high-symmetry lines using group representations, the band structure, and the nature of the Dirac points and nodal lines occurring near $\varepsilon_F$. The de Haas-van Alphen effect (dHvA) indicates a Fermi surface in agreement with the calculations. We find an elliptically-shaped nodal line very close to $\varepsilon_F$ around and near the $S$-point on the $k_y-k_z$ plane that results from the intersection of two upside-down Dirac cones. The two Dirac points of the participating Kramers degenerate bands are only 5 meV apart, hence an accessible magnetic field might induce a crossing between the spin-up partner of the upper-Dirac cone and the spin-down partner of the lower Dirac cone, possibly explaining the anomalies observed in the magnetic torque.