Publication | Open Access
Dirac Semimetal in Three Dimensions
1.7K
Citations
16
References
2012
Year
EngineeringTopological Materialsβ-Cristobalite BioGeometric QuantizationGraphene-based Nano-antennasWeyl SemimetalsQuantum MaterialsLow-dimensional SystemMaterials SciencePhysicsCondensed Matter TheoryDirac SemimetalDirac PointsApplied PhysicsCondensed Matter PhysicsGrapheneDirac OperatorGraphene NanoribbonFermi Level
We show that the pseudorelativistic physics of graphene near the Fermi level can be extended to three dimensional (3D) materials. Unlike in phase transitions from inversion symmetric topological to normal insulators, we show that particular space groups also allow 3D Dirac points as symmetry protected degeneracies. We provide criteria necessary to identify these groups and, as an example, present ab initio calculations of β-cristobalite BiO(2) which exhibits three Dirac points at the Fermi level. We find that β-cristobalite BiO(2) is metastable, so it can be physically realized as a 3D analog to graphene.
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