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Observation of gapped state in rare-earth monopnictide HoSb

  • M. Mofazzel Hosen
  • , Gyanendra Dhakal
  • , Baokai Wang
  • , Narayan Poudel
  • , Bahadur Singh
  • , Klauss Dimitri
  • , Firoza Kabir
  • , Christopher Sims
  • , Sabin Regmi
  • , William Neff
  • , Anan Bari Sarkar
  • , Amit Agarwal
  • , Daniel Murray
  • , Franziska Weickert
  • , Krzysztof Gofryk
  • , Orest Pavlosiuk
  • , Piotr Wiśniewski
  • , Dariusz Kaczorowski
  • , Arun Bansil
  • , Madhab Neupane

Research output: Contribution to journalArticlepeer-review

17 Scopus citations

Abstract

The rare-earth monopnictide family is attracting an intense current interest driven by its unusual extreme magnetoresistance (XMR) property and the potential presence of topologically non-trivial surface states. The experimental observation of non-trivial surface states in this family of materials are not ubiquitous. Here, using high-resolution angle-resolved photoemission spectroscopy, magnetotransport, and parallel first-principles modeling, we examine the nature of electronic states in HoSb. Although we find the presence of bulk band gaps at the Γ and X-symmetry points of the Brillouin zone, we do not find these gaps to exhibit band inversion so that HoSb does not host a Dirac semimetal state. Our magnetotransport measurements indicate that HoSb can be characterized as a correlated nearly-complete electron-hole-compensated semimetal. Our analysis reveals that the nearly perfect electron-hole compensation could drive the appearance of non-saturating XMR effect in HoSb.

Original languageEnglish
Article number12961
JournalScientific Reports
Volume10
Issue number1
DOIs
StatePublished - Dec 1 2020

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