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Observation of spin-momentum locked surface states in amorphous Bi<inf>2</inf>Se<inf>3</inf>

  • Paul Corbae
  • , Samuel Ciocys
  • , Dániel Varjas
  • , Ellis Kennedy
  • , Steven Zeltmann
  • , Manel Molina-Ruiz
  • , Sinéad M. Griffin
  • , Chris Jozwiak
  • , Zhanghui Chen
  • , Lin Wang Wang
  • , Andrew M. Minor
  • , Mary Scott
  • , Adolfo G. Grushin
  • , Alessandra Lanzara
  • , Frances Hellman

Research output: Contribution to journalArticlepeer-review

69 Scopus citations

Abstract

Crystalline symmetries have played a central role in the identification and understanding of quantum materials. Here we investigate whether an amorphous analogue of a well known three-dimensional strong topological insulator has topological properties in the solid state. We show that amorphous Bi2Se3 thin films host a number of two-dimensional surface conduction channels. Our angle-resolved photoemission spectroscopy data are consistent with a dispersive two-dimensional surface state that crosses the bulk gap. Spin-resolved photoemission spectroscopy shows this state has an anti-symmetric spin texture, confirming the existence of spin-momentum locked surface states. We discuss these experimental results in light of theoretical photoemission spectra obtained with an amorphous topological insulator tight-binding model, contrasting it with alternative explanations. The discovery of spin-momentum locked surface states in amorphous materials opens a new avenue to characterize amorphous matter, and triggers the search for an overlooked subset of quantum materials outside of current classification schemes.
Original languageEnglish
Pages (from-to)200-206
Number of pages7
JournalNature Materials
Volume22
Issue number2
DOIs
StatePublished - Feb 1 2023
Externally publishedYes

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