Topological Phases of Zintl Compounds Ba<sub>3</sub>X<sub>2</sub>Y<sub>4 </sub>(X=Zn, Cd; Y=As, Sb)

ORAL

Abstract

Based on first-principles calculations and effective k.p model analysis, we have studied three Zintl compounds, including Ba3Zn2As4, Ba3Cd2As4 and Ba3Cd2Sb4, to reveal their electronic band topology under different conditions, such as including and not including spin-orbit coupling (SOC) and different external strains. We find that these family materials are close to the boundaries of several topological phases. When SOC is ignored, there are topological nodal lines around Fermi energy due to band inversion between valence and conduction bands at one or two time-reversal invariant momenta, which can be tuned by proper strain. When SOC is further included, these nodal lines are gaped and these materials become weak or strong topological insulators (TIs). They are suitable for studying topological phase transition.

*We acknowledge the supports from the Ministry of Science and Technology of China (Grants No. 2016YFA0300600 and 2018YFA0305700) the National Natural Science Foundation (Grant No. 11674369) and the Chinese Academy of Sciences (Grant No. XDB07000000).

Presenters

  • Tan Zhang

    • Chinese Academy of Sciences

Authors

  • Tan Zhang

    • Chinese Academy of Sciences
  • Si-Min Nie

    • Stanford University
    • Department of Materials Science and Engineering, Stanford University
  • Hongming Weng

    • Institute of Physics, Chinese Academy of Sciences
    • Institute of physics, Chinese Academy of Sciences
    • Chinese Academy of Sciences
    • Institute of Physics CAS
    • Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences
    • Institute of Physics
  • Zhong Fang

    • Institute of physics, Chinese Academy of Sciences
    • Chinese Academy of Sciences