Saddle-like topological surface states on the TT'X family of compounds (T, T' = Transition metal, X= Si, Ge)
arXiv:1703.04048 · doi:10.1103/PhysRevB.97.075125
Abstract
Topological nodal-line semimetals are exotic conductors that host symmetry-protected conducting nodal-lines in their bulk electronic spectrum and nontrivial drumhead states on the surface. Based on first-principles calculations and an effective model analysis, we identify the presence of topological nodal-line semimetal states in the TT'X family of compounds (T, T' = transition metal, X= Si, or Ge) in the absence of spin-orbit coupling (SOC). Taking ZrPtGe as an exemplar system, we show that this material harbors a single nodal line on the plane, which is protected by the mirror plane symmetry. Surface electronic structure calculations further reveal the existence of a drumhead surface state nested inside the nodal line projection on the (010) surface with a saddle-like energy dispersion. When the SOC is included, the nodal line gaps out and the system transitions to a strong topological insulator state with . The topological surface state evolves from the drumhead surface state via the sharing of its saddle-like energy dispersion within the bulk energy gap. These features differ remarkably from those of the currently known topological surface states in topological insulators such as BiSe with Dirac-cone-like energy dispersions.
4 figures
References in corpus (12)
- Discovery (theoretical prediction and experimental observation) of a large-gap topological-insulator class with spin-polarized single-Dirac-cone on the surface
- WannierTools: An open-source software package for novel topological materials
- Titanic Magnetoresistance in WTe2
- Weyl semimetal phase in non-centrosymmetric transition metal monophosphides
- Topological nodal line semimetals
- Weyl Semimetals, Fermi Arcs and Chiral Anomalies (A Short Review)
- Classification of reflection symmetry protected topological semimetals and nodal superconductors
- Line of Dirac Nodes in Hyper-Honeycomb Lattices
- Topological electronic structure and Weyl semimetal in the TlBiSe class of semiconductors
- Tunable Line Node Semimetals
- Correlation and transport phenomena in topological nodal-loop semimetals
- Stable charge density wave phase in a 1T-TiSe monolayer
Cited by in corpus (12)
- WannierTools: An open-source software package for novel topological materials
- CsVSb: a topological kagome metal with a superconducting ground state
- Bulk and surface electronic structure of the dual-topology semimetal Pt2HgSe3
- Topological Hourglass Dirac Semimetal in the Nonpolar Phase of AgBiO
- Starfruit-like nodal semimetal to Dirac and Weyl semimetal state in CaAuAs
- Saddle-point von Hove singularity and dual topological insulator state in PtHgSe
- Archetypical "push the band critical point" mechanism for peaking of the density of states in three-dimensional crystals: Theory and case study of cubic HS
- Topological states in superlattices of HgTe-class materials for engineering three-dimensional flat bands
- Topological crystalline insulator state with type-II Dirac fermions in transition metal dipnictides
- Tunable interface states between Floquet-Weyl semimetals
- Gapless Criterion for Crystals from Effective Axion Field
- Role of effective mass anisotropy in realizing a hybrid nodal-line fermion state