English

Magnetotransport in Sr3PbO antiperovskite with three-dimensional massive Dirac electrons

Materials Science 2018-09-26 v1 Strongly Correlated Electrons

Abstract

Novel topological phenomena are anticipated for three-dimensional (3D) Dirac electrons. The magnetotransport properties of cubic Sr3PbO{\rm Sr_{3}PbO} antiperovskite, theoretically proposed to be a 3D massive Dirac electron system, are studied. The measurements of Shubnikov-de Haas oscillations and Hall resistivity indicate the presence of a low density (1×1018\sim 1 \times 10^{18} cm3{\rm cm^{-3}}) of holes with an extremely small cyclotron mass of 0.01-0.06mem_{e}. The magnetoresistance Δρxx(B)\Delta\rho_{xx}(B) is linear in magnetic field BB with the magnitude independent of temperature. These results are fully consistent with the presence of 3D massive Dirac electrons in Sr3PbO{\rm Sr_{3}PbO}. The chemical flexibility of the antiperovskites and our findings in the family member, Sr3PbO{\rm Sr_{3}PbO}, point to their potential as a model system in which to explore exotic topological phases.

Keywords

Cite

@article{arxiv.1807.08006,
  title  = {Magnetotransport in Sr3PbO antiperovskite with three-dimensional massive Dirac electrons},
  author = {S. Suetsugu and K. Hayama and A. W. Rost and J. Nuss and C. Mühle and J. Kim and K. Kitagawa and H. Takagi},
  journal= {arXiv preprint arXiv:1807.08006},
  year   = {2018}
}