4.8 Article

Higher-order topological insulators

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SCIENCE ADVANCES
卷 4, 期 6, 页码 -

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.aat0346

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资金

  1. Swiss National Science Foundation [200021_169061]
  2. European Union's Horizon 2020 research and innovation program [ERC-StG-Neupert-757867-PARATOP]
  3. NSF [PHY-1066293]
  4. Spanish Ministry of Economy and Competitiveness [FIS2016-75862-P]
  5. Department of Energy [de-sc0016239]
  6. Simons Investigator Award
  7. Packard Foundation
  8. Schmidt Fund for Innovative Research
  9. NSF Early-Concept Grants for Exploratory Research [DMR-1643312, ONR-N00014-14-1-0330]
  10. ARO MURI [W911NF-12-1-0461]
  11. NSF-MRSEC [DMR-1420541]

向作者/读者索取更多资源

Three-dimensional topological (crystalline) insulators are materials with an insulating bulk but conducting surface states that are topologically protected by time-reversal (or spatial) symmetries. We extend the notion of three-dimensional topological insulators to systems that host no gapless surface states but exhibit topologically protected gapless hinge states. Their topological character is protected by spatiotemporal symmetries of which we present two cases: (i) Chiral higher-order topological insulators protected by the combination of time-reversal and a fourfold rotation symmetry. Their hinge states are chiral modes, and the bulk topology is Z(2)-classified. (ii) Helical higher-order topological insulators protected by time-reversal and mirror symmetries. Their hinge states come in Kramers pairs, and the bulk topology is Z-classified. We provide the topological invariants for both cases. Furthermore, we show that SnTe as well as surface-modified Bi(2)Tel, BiSe, and BiTe are helical higher-order topological insulators and propose a realistic experimental setup to detect the hinge states.

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