Observation of a topological crystalline insulator phase and topological phase transition in Pb(1-x)Sn(x)Te.

نویسندگان

  • Su-Yang Xu
  • Chang Liu
  • N Alidoust
  • M Neupane
  • D Qian
  • I Belopolski
  • J D Denlinger
  • Y J Wang
  • H Lin
  • L A Wray
  • G Landolt
  • B Slomski
  • J H Dil
  • A Marcinkova
  • E Morosan
  • Q Gibson
  • R Sankar
  • F C Chou
  • R J Cava
  • A Bansil
  • M Z Hasan
چکیده

A topological insulator protected by time-reversal symmetry is realized via spin-orbit interaction-driven band inversion. The topological phase in the Bi(1-x)Sb(x) system is due to an odd number of band inversions. A related spin-orbit system, the Pb(1-x)Sn(x)Te, has long been known to contain an even number of inversions based on band theory. Here we experimentally investigate the possibility of a mirror symmetry-protected topological crystalline insulator phase in the Pb(1-x)Sn(x)Te class of materials that has been theoretically predicted to exist in its end compound SnTe. Our experimental results show that at a finite Pb composition above the topological inversion phase transition, the surface exhibits even number of spin-polarized Dirac cone states revealing mirror-protected topological order distinct from that observed in Bi(1-x)Sb(x). Our observation of the spin-polarized Dirac surface states in the inverted Pb(1-x)Sn(x)Te and their absence in the non-inverted compounds related via a topological phase transition provide the experimental groundwork for opening the research on novel topological order in quantum devices.

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عنوان ژورنال:
  • Nature communications

دوره 3  شماره 

صفحات  -

تاریخ انتشار 2012