English

Multiple Dirac Nodes and Symmetry Protected Dirac Nodal Line in Orthorhombic $\alpha$-RhSi

Strongly Correlated Electrons 2020-09-22 v1

Abstract

Owing to their chiral cubic structure, exotic multifold topological excitations have been predicted and recently observed in transition metal silicides like β\beta-RhSi. Herein, we report that the topological character of RhSi is also observed in its orthorhombic α\alpha-phase which displays multiple types of Dirac nodes very close to the Fermi level (εF\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 εF\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 εF\varepsilon_F around and near the SS-point on the kykzk_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.

Keywords

Cite

@article{arxiv.2002.03020,
  title  = {Multiple Dirac Nodes and Symmetry Protected Dirac Nodal Line in Orthorhombic $\alpha$-RhSi},
  author = {Shirin Mozaffari and Niraj Aryal and Rico Schönemann and Kuan-Wen Chen and Wenkai Zheng and Gregory T. McCandless and Julia Y. Chan and Efstratios Manousakis and Luis Balicas},
  journal= {arXiv preprint arXiv:2002.03020},
  year   = {2020}
}