Skip to main navigation Skip to search Skip to main content

Effect of Dilute Magnetism in a Topological Insulator

  • Firoza Kabir
  • , M. Mofazzel Hosen
  • , Xiaxin Ding
  • , Christopher Lane
  • , Gyanendra Dhakal
  • , Yangyang Liu
  • , Klauss Dimitri
  • , Christopher Sims
  • , Sabin Regmi
  • , Anup Pradhan Sakhya
  • , Luis Persaud
  • , John E. Beetar
  • , Yong Liu
  • , Michael Chini
  • , Arjun K. Pathak
  • , Jian Xin Zhu
  • , Krzysztof Gofryk
  • , Madhab Neupane

Research output: Contribution to journalArticlepeer-review

Abstract

Three-dimensional (3D) topological insulator (TI) has emerged as a unique state of quantum matter and generated enormous interests in condensed matter physics. The surfaces of a 3D TI consist of a massless Dirac cone, which is characterized by the Z2 topological invariant. Introduction of magnetism on the surface of a TI is essential to realize the quantum anomalous Hall effect and other novel magneto-electric phenomena. Here, by using a combination of first-principles calculations, magneto-transport and angle-resolved photoemission spectroscopy (ARPES), we study the electronic properties of gadolinium (Gd)-doped Sb2Te3. Our study shows that Gd doped Sb2Te3 is a spin-orbit-induced bulk band-gap material, whose surface is characterized by a single topological surface state. Our results provide a new platform to investigate the interactions between dilute magnetism and topology in magnetic doped topological materials.

Original languageEnglish
Article number706658
JournalFrontiers in Materials
Volume8
DOIs
StatePublished - Nov 25 2021

Fingerprint

Dive into the research topics of 'Effect of Dilute Magnetism in a Topological Insulator'. Together they form a unique fingerprint.

Cite this