Triply degenerate nodal points in RERhGe (RE=Y, La, Lu)
arXiv:1711.03370 · doi:10.1103/PhysRevB.98.045104
Abstract
As a new type of fermions without counterpart in high energy physics, triply degenerate fermions show exotic physical properties, which are represented by triply degenerate nodal points in topological semimetals. Here, based on the space group theory analysis, we propose a practical guidance for seeking a topological semimetal with triply degenerate nodal points located at a symmetric axis, which is applicable to both symmorphic and nonsymmorphic crystals. By using this guidance in combination with the first-principles electronic structure calculations, we predict a class of triply degenerate topological semimetals RERhGe (RE=Y, La, Lu). In these compounds, the triply degenerate nodal points are located at the -A axis and not far from the Fermi level. Especially, LaRhGe has a pair of triply degenerate nodal points located very closely to the Fermi level. Considering the fact that the single crystals of RERhGe have been synthesized experimentally, the RERhGe class of compounds will be an appropriate platform for studying exotic physical properties of triply degenerate topological semimetals.
6 pages, 6 figures, 5 tables
References in corpus (18)
- Type-II Weyl Semimetals
- Mott transition in VO2 revealed by infrared spectroscopy and nano-imaging
- Beyond Dirac and Weyl fermions: Unconventional quasiparticles in conventional crystals
- Evidence for a Structurally-driven Insulator-to-metal Transition in VO2: a View from the Ultrafast Timescale
- Topological Semimetals Predicted from First-principles Calculations
- Experimental Observation of Three-Component 'New Fermions' in Topological Semimetal MoP
- Topological Semimetals with Triply Degenerate Nodal Points in θ-phase Tantalum Nitride
- Type-II Dirac fermions in the PtSe class of transition metal dichalcogenides
- Electrodynamics of the vanadium oxides VO2 and V2O3
- Co-existence of Weyl Fermion and Massless Triply Degenerate Nodal Points
- New fermions on the line in topological symmorphic metals
- Direct Observation of Decoupled Structural and Electronic Transitions and an Ambient Pressure Monoclinic-Like Metallic Phase of VO
- Prediction of triple point fermions in simple half-Heusler topological insulators
- Correlation-driven insulator-metal transition in near-ideal vanadium dioxide films
- Tunneling Breakdown of a Strongly Correlated Insulating State in VO Induced by Intense Multi-Terahertz Excitation
- From Type-II Triply Degenerate Nodal Points and Three-Band Nodal Rings to Type-II Dirac Points in Centrosymmetric Zirconium Oxide
- Mesoscopic structural phase progression in photo-excited VO2 revealed by time-resolved x-ray diffraction microscopy
- Prediction of Ideal Topological Semimetals with Triply Degenerate Points in NaCuTe Family
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