4.6 Article

Non-Abelian parafermions in time-reversal-invariant interacting helical systems

期刊

PHYSICAL REVIEW B
卷 91, 期 8, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.91.081406

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资金

  1. Swiss National Science Foundation
  2. NCCR Quantum Science and Technology
  3. Helmholtz association [VI-521]
  4. DFG [GRK 1621, SFB 1143]
  5. National Research Fund, Luxembourg [ATTRACT 7556175]

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The interplay between bulk spin-orbit coupling and electron-electron interactions produces umklapp scattering in the helical edge states of a two-dimensional topological insulator. If the chemical potential is at the Dirac point, umklapp scattering can open a gap in the edge state spectrum even if the system is time-reversal invariant. We determine the zero-energy bound states at the interfaces between a section of a helical liquid which is gapped out by the superconducting proximity effect and a section gapped out by umklapp scattering. We show that these interfaces pin charges which are multiples of e/2, giving rise to a Josephson current with 8 pi periodicity. Moreover, the bound states, which are protected by time-reversal symmetry, are fourfold degenerate and can be described as Z(4) parafermions. We determine their braiding statistics and show how braiding can be implemented in topological insulator systems.

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