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Anomalous electronic structure and magnetoresistance in TaAs2

  • Yongkang Luo
  • , R. D. McDonald
  • , P. F.S. Rosa
  • , B. Scott
  • , N. Wakeham
  • , N. J. Ghimire
  • , E. D. Bauer
  • , J. D. Thompson
  • , F. Ronning

Research output: Contribution to journalArticlepeer-review

79 Scopus citations

Abstract

The change in resistance of a material in a magnetic field reflects its electronic state. In metals with weakly-or non-interacting electrons, the resistance typically increases upon the application of a magnetic field. In contrast, negative magnetoresistance may appear under some circumstances, e.g., in metals with anisotropic Fermi surfaces or with spin-disorder scattering and semimetals with Dirac or Weyl electronic structures. Here we show that the non-magnetic semimetal TaAs 2 possesses a very large negative magnetoresistance, with an unknown scattering mechanism. Density functional calculations find that TaAs2 is a new topological semimetal [Z2 invariant (0;111)] without Dirac dispersion, demonstrating that a negative magnetoresistance in non-magnetic semimetals cannot be attributed uniquely to the Adler-Bell-Jackiw chiral anomaly of bulk Dirac/Weyl fermions.

Original languageEnglish
Article number27294
JournalScientific Reports
Volume6
DOIs
StatePublished - Jun 7 2016

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