4.8 Article

Non-Hermitian Dirac Cones

Journal

PHYSICAL REVIEW LETTERS
Volume 124, Issue 23, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.124.236403

Keywords

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Funding

  1. Singapore MOE Academic Research Fund Tier 3 Grant [MOE2016-T3-1-006]
  2. Singapore MOE Academic Research Fund Tier 1 Grant [RG187/18]
  3. Singapore MOE Academic Research Fund Tier 2 Grant [MOE 2018-T2-1-022(S)]

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Non-Hermitian systems containing gain or loss commonly host exceptional point degeneracies, not the diabolic points that, in Hermitian systems, play a key role in topological transitions and related phenomena. Non-Hermitian Hamiltonians with parity-time symmetry can have real spectra but generally nonorthogonal eigenstates, impeding the emergence of diabolic points. We introduce a pair of symmetries that induce not only real eigenvalues but also pairwise eigenstate orthogonality. This allows non-Hermitian systems to host Dirac points and other diabolic points. We construct non-Hermitian models exhibiting three exemplary phenomena previously limited to the Hermitian regime: Haldane-type topological phase transition, Landau levels without magnetic fields, and Weyl points. This establishes a new connection between non-Hermitian physics and the rich phenomenology of diabolic points.

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