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Quantum confinement effect induced topological phase transitions in anisotropic Weyl semimetal

  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

The quantum anomalous Hall effect can be realized in the Weyl semimetal based on a simple cubic lattice. On the basis of the system with broken time-reversal symmetry, we find the energy spectrum is isotropic in kx and ky direction but anisotropic in kz direction. And the quantum confinement effect is strongly anisotropic in different direction, exhilaratingly, the periodic modulation of energy gap with the film thickness along z direction is found. We also find out that the topological phase transition is happened between a topological trivial insulator and a quantum anomalous Hall insulator due to confinement effect. These results can not only promote a better understanding of Weyl Semimetal, but also provide a good platform to design topological quantum devices based on the Weyl semimetal in the future.

Original languageEnglish
Article number106386
JournalSuperlattices and Microstructures
Volume138
DOIs
StatePublished - Feb 2020

Keywords

  • The quantum anomalous Hall effect
  • The quantum confinement effect
  • Weyl semimetal

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