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Robust three-dimensional type-II Dirac semimetal state in SrAgBi

Topological semimetals such as Dirac, Weyl or nodal line semimetals are widely studied for their peculiar properties including high Fermi velocities, small effective masses and high magnetoresistance. When the Dirac cone is tilted, exotic phenomena could emerge whereas materials hosting such states are promising for photonics and plasmonics applications. Here we present evidence that SrAgBi is a spin-orbit coupling-induced type-II three-dimensional Dirac semimetal featuring tilted Dirac cone at the Fermi energy. Near charge compensation and Fermi surface characteristics are not much perturbed by 7% of vacancy defects on the Ag atomic site, suggesting that SrAgBi could be a material of interest for observation of robust optical and spintronic topological quantum phenomena.

75 CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND↗

Materials Data on SrAgBi by Materials Project

SrAgBi is hexagonal omega structure-derived structured and crystallizes in the hexagonal P6_3/mmc space group. The structure is three-dimensional. Sr is bonded to six equivalent Ag and six equivalent Bi atoms to form a mixture of face and edge-sharing SrAg6Bi6 cuboctahedra. All Sr–Ag bond lengths are 3.61 Å. All Sr–Bi bond lengths are 3.61 Å. Ag is bonded in a 9-coordinate geometry to six equivalent Sr and three equivalent Bi atoms. All Ag–Bi bond lengths are 2.86 Å. Bi is bonded in a 9-coordinate geometry to six equivalent Sr and three equivalent Ag atoms.

36 MATERIALS SCIENCE↗