Fermiology and transport properties of a proposed topological crystalline insulator

ORAL

Abstract

Compared to Z2 topological insulators and Dirac/Weyl semimetals, there are much fewer topological crystalline insulator candidates. SrAg4Sb2 is predicted to be a topological crystalline insulator when spin-orbit coupling is taken into account. In this talk, I will present a study on single crystals of SrAg4Sb2 using electrical transport, magnetic torque and first-principles calculations. Our measurements show quantum oscillations above 3 T. The comparison of the Fermi pockets obtained from our quantum oscillations and the DFT calculations show good agreement, supporting SrAg4Sb2 being a topological crystalline insulator candidate.

Presenters

  • J Green

    • University of California, Los Angeles

Authors

  • J Green

    • University of California, Los Angeles
  • Eve Emmanouilidou

    • University of California, Los Angeles
  • Harry Morgan

    • UCLA
  • William Laderer

    • UCLA
  • Chaowei Hu

    • University of Washington, Seattle
    • University of Washington
  • Jonathan J Loera

    • University of California, Merced
  • Anastassia Alexandrova

    • UCLA
  • Ni Ni

    • University of California, Los Angeles