Towards Weyltronics: Realization of epitaxial NbP and TaP Weyl Semimetal thin films

ORAL

Abstract

Weyl Semimetals (WSMs), a recently discovered topological state of matter, exhibit an electronic structure governed by linear band dispersions and degeneracy (Weyl) points leading to rich physical phenomena, which are yet to be exploited in thin film devices. While WSMs were established in the monopnictide compound family several years ago, the growth of thin films has remained a challenge. Here, we report the growth of epitaxial thin films of NbP and TaP by means of molecular beam epitaxy. Single crystalline films are grown on MgO (001) substrates using thin Nb (Ta) buffer layers, and are found to be tensile strained (1%) and with slightly P-rich stoichiometry with respect to the bulk crystals. The resulting electronic structure exhibits topological surface states characteristic of a P-terminated surface and linear dispersion bands in agreement with the calculated band structure, along with a Fermi-level shift of -0.2 eV with respect to the Weyl points. The growth of epitaxial thin films opens up the use of strain and controlled doping to access and tune the electronic structure of Weyl Semimetals on demand, paving the way for the rational design and fabrication of electronic devices ruled by topology.

Presenters

  • Amilcar Bedoya Pinto

    • Max Planck Inst Microstructure

Authors

  • Amilcar Bedoya Pinto

    • Max Planck Inst Microstructure
  • Avanindra Pandeya

    • Max Planck Inst Microstructure
  • Defa Liu

    • Max Planck Inst Microstructure
  • Hakan Deniz

    • Nano-Systems from ions, spins and electrons, Max Planck Institute of Microstructure Physics
    • Max Planck Inst Microstructure
  • Kai Chang

    • Max Planck Inst Microstructure
  • Hengxin Tan

    • Max Planck Inst Microstructure
  • Hyeon Han

    • Max Planck Inst Microstructure
  • Jagannath Jena

    • Max Planck Inst Microstructure
  • Ilya Kostanovskiy

    • Max Planck Institute for Microstructure Physics
    • Max Planck Inst Microstructure
  • Stuart Parkin

    • Nano-Systems from ions, spins and electrons, Max Planck Institute of Microstructure Physics
    • Max Planck Institute for Microstructure Physics
    • Max Planck Institude of Microstructure Physics
    • Max Planck Institute of Microstructure Physics
    • Max Planck Inst Microstructure