Topological Nodal Line Semimetals with Chiral Symmetry

ORAL

Abstract

Topological semimetals occur in two variants, with the bands touching at point nodes (Weyl or Dirac semimetals), or touching at nodal lines in the Brillouin zone. While Weyl/Dirac semimetals can occur with internal symmetries only (such as time-reversal, charge conjugation, and possibly a product of the two, called chiral/sublattice symmetry), nodal line semimetals have been believed to require more symmetry, such as SU(2) spin rotation or crystalline symmetries. Here we show that in the presence of chiral symmetry, additional symmetries are not necessary to have topological nodal line semimetals. Starting from a generic model Hamiltonian possessing only time-reversal, inversion, and chiral symmetries, which belongs to the Altland-Zirnbauer symmetry class CII, we demonstrate how a topological nodal line semimetal can be obtained by breaking either time-reversal, inversion symmetry, or both. The nodal line semimetal has robust topological surface states protected by chiral symmetry. Our findings will be useful for ongoing explorations of topological nodal line semimetals.

*FA acknowledges financial support from the INFOSYS Foundation and the Deaprtment of Atomic Energym Govt. of India. AD acknowledges support from GIF Grant I-1505-303.10/2019, DFG MI 658/10-2, DFG RO 2247/11-1, DFG EG 96/13-1, CRC 183 (project C01), Israel PBC, the Dean of Faculty fellowship (WIS), Koshland Foundation.

Presenters

  • Faruk Abdulla

    • Harish-Chandra Research Institute

Authors

  • Faruk Abdulla

    • Harish-Chandra Research Institute
  • Ganpathy N Murthy

    • University of Kentucky
  • Ankur Das

    • Weizmann Institute of Science