English

Topological Semimetal features in the Multiferroic Hexagonal Manganites

Materials Science 2019-07-03 v1

Abstract

Using first-principles calculations we examine the band structures of ferromagnetic hexagonal manganites YXO3\mathrm{YXO_3} (X=V, Cr, Mn, Fe and Co) in the nonpolar nonsymmorphic P63/mmcP6_3/mmc space group. For YVO3\mathrm{YVO_3} and YCrO3\mathrm{YCrO_3} we find a band inversion near the Fermi energy that generates a nodal ring in the kz=0k_z=0 mirror plane. We perform a more detailed analysis for these compounds and predict the existence of the topological "drumhead" surface states. Finally, we briefly discuss the low-symmetry polar phases (space group P63cmP6_3cm) of these systems, and show they can undergo a P63/mmcP63cmP6_3/mmc \rightarrow P6_3cm transition by condensation of soft K3K_3 and Γ2\Gamma_2^- phonons. Based on our findings, stabilizing these compounds in the hexagonal phase could offer a promising platform for studying the interplay of topology and multiferroicity, and the coexistence of real-space and reciprocal-space topological protection in the same phase.

Keywords

Cite

@article{arxiv.1902.10085,
  title  = {Topological Semimetal features in the Multiferroic Hexagonal Manganites},
  author = {Sophie F. Weber and Sinéad M. Griffin and Jeffrey B. Neaton},
  journal= {arXiv preprint arXiv:1902.10085},
  year   = {2019}
}
R2 v1 2026-06-23T07:52:02.371Z