Unravelling the edge spectra of non-Hermitian Chern insulators
arXiv:2209.06774 · doi:10.1103/PhysRevB.107.035101
Abstract
Non-Hermitian Chern insulators differ from their Hermitian cousins in one key aspect: their edge spectra are incredibly rich and confounding. For example, even in the simple case where the bulk spectrum consists of two bands with Chern number , the edge spectrum in the slab geometry may have one or two edge states on both edges, or only at one of the edges, depending on the model parameters. This blatant violation of the familiar bulk-edge correspondence casts doubt on whether the bulk Chern number can still be a useful topological invariant, and demands a working theory that can predict and explain the myriad of edge spectra from the bulk Hamiltonian to restore the bulk-edge correspondence. We outline how such a theory can be set up to yield a thorough understanding of the edge phase diagram based on the notion of the generalized Brillouin zone (GBZ) and the asymptotic properties of block Toeplitz matrices. The procedure is illustrated by solving and comparing three non-Hermitian generalizations of the Qi-Wu-Zhang model, a canonical example of two-band Chern insulators. We find that, surprisingly, in many cases the phase boundaries and the number and location of the edge states can be obtained analytically. Our analysis also reveals a non-Hermitian semimetal phase whose energy-momentum spectrum forms a continuous membrane with the edge modes transversing the hole, or genus, of the membrane. Subtleties in defining the Chern number over GBZ, which in general is not a smooth manifold and may have singularities, are demonstrated using examples. The approach presented here can be generalized to more complicated models of non-Hermitian insulators or semimetals in two or three dimensions.
19 pages, 12 figures
References in corpus (37)
- Non-Hermitian Physics
- Topological Origin of Non-Hermitian Skin Effects
- Loss-induced suppression and revival of lasing
- Edge Modes, Degeneracies, and Topological Numbers in Non-Hermitian Systems
- Topological phases in the non-Hermitian Su-Schrieffer-Heeger model
- Weyl Exceptional Rings in a Three-Dimensional Dissipative Cold Atomic Gas
- Reversing the Pump-Dependence of a Laser at an Exceptional Point
- Topological phase transition in non-Hermitian quasicrystals
- Observation of parity-time symmetry breaking in a single spin system
- Periodic Table for Topological Bands with Non-Hermitian Bernard-LeClair Symmetries
- Universal non-Hermitian skin effect in two and higher dimensions
- Non-Hermitian Topological Sensors
- New topological invariants in non-Hermitian systems
- Observation of arbitrary topological windings of a non-Hermitian band
- Non-Hermitian skin modes induced by on-site dissipations and chiral tunneling effect
- Active topological photonics
- Lasing from multipole topological corner states
- Knots and Non-Hermitian Bloch Bands
- Topological defect engineering and PT-symmetry in non-Hermitian electrical circuits
- Gain and loss induced topological insulating phase in a non Hermitian electrical circuit
- Dynamically encircling an exceptional point in a real quantum system
- Measuring the knot of non-Hermitian degeneracies and non-commuting braids
- Experimental Realization of Weyl Exceptional Rings in a Synthetic Three-Dimensional Non-Hermitian Phononic Crystal
- Observation of non-Hermitian topology with non-unitary dynamics of solid-state spins
- Fundamental limits for reciprocal and non-reciprocal non-Hermitian quantum sensing
- Non-Hermitian physics without gain or loss: the skin effect of reflected waves
- Nonlinear non-Hermitian higher-order topological laser
- Connections between the Open-boundary Spectrum and Generalized Brillouin Zone in Non-Hermitian Systems
- Topological characterization of non-Hermitian multiband systems using Majorana's Stellar Representation
- Topological Bulk Lasing Modes Using an Imaginary Gauge Field
- Quantum Fisher Information Perspective on Sensing in Anti-PT Symmetric Systems
- Single-mode lasing based on PT-breaking of two-dimensional photonic higher-order topological insulator
- Long-lived elementary excitations and light coherence in topological lasers
- Dynamical signatures of point-gap Weyl semimetal
- The non-Hermitian geometrical property of 1D Lieb lattice under Majorana's stellar representation
- Defective Edge states and Anomalous Bulk-boundary Correspondence for Topological Insulators under Non-Hermitian Similarity Transformation
- Cosine Edge Mode in a Periodically Driven Quantum System
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- Non-Bloch bands in two-dimensional non-Hermitian systems
- Non-Hermitian Floquet Topological Matter -- A Review
- Topological origin of non-Hermitian skin effect in higher dimensions and uniform spectra
- Nontrivial worldline winding in non-Hermitian quantum systems
- Edge-selective extremal damping from topological heritage of dissipative Chern insulators
- Topological Invariant for Multi-Band Non-hermitian Systems with Chiral Symmetry
- Measuring topological invariants of even-dimensional line-gapped non-Hermitian systems through quench dynamics