Constraints of internal symmetry on the non-Hermitian skin effect and bidirectional skin effect under the action of the Hermitian conjugate of time-reversal symmetry
arXiv:2310.18627 · doi:10.1103/PhysRevB.109.L081108
Abstract
Non-Hermitian skin effect is a basic phenomenon in non-Hermitian system, which means that an extensive number of eigenstates can be localized at the boundary. In this Letter, we systematically investigate the constraints from all internal symmetries on the non-Hermitian skin effect in arbitrary dimensions. By adopting the powerful Amoeba formulation, we build a generic correspondence between the various internal symmetries and the behavior of the non-Hermitian skin effect. Notably, we find that, for non-Hermitian systems with the time-reversal symmetry, the eigenstates can simultaneously localize at opposite boundaries, which is beyond the Amoeba formulation, and we dub the phenomenon bidirectional skin effect. Our work provides an overall perspective from the internal symmetry to the non-Hermitian skin effect.
References in corpus (30)
- Topological Origin of Non-Hermitian Skin Effects
- Correspondence between winding numbers and skin modes in non-hermitian systems
- Non-Hermitian bulk-boundary correspondence and auxiliary generalized Brillouin zone theory
- Universal non-Hermitian skin effect in two and higher dimensions
- Observation of Non-Hermitian Skin Effect and Topology in Ultracold Atoms
- Non-Bloch band theory of non-Hermitian Hamiltonians in the symplectic class
- Symmetry and Higher-Order Exceptional Points
- Knots and Non-Hermitian Bloch Bands
- Non-Hermitian Edge Burst
- Simple formulas of directional amplification from non-Bloch band theory
- Observation of Acoustic Non-Hermitian Bloch Braids and Associated Topological Phase Transitions
- Impurity induced scale-free localization
- Fermion doubling theorems in 2D non-Hermitian systems for Fermi points and exceptional points
- Exceptional Topological Insulators
- Topological Field Theory of Non-Hermitian Systems
- Non-equilibrium stationary states of quantum non-Hermitian lattice models
- Anomalous Skin Effects in Disordered Systems with a Single non-Hermitian Impurity
- Knot topology of exceptional point and non-Hermitian no-go theorem
- Enhancement of Second-Order Non-Hermitian Skin Effect by Magnetic Fields
- Topological semimetal phase with exceptional points in one-dimensional non-Hermitian systems
- Geometric Origin of Non-Bloch PT Symmetry Breaking
- Classification of Exceptional Nodal Topologies Protected by Symmetry
- Hybrid higher-order skin-topological effect in hyperbolic lattices
- Dynamic skin effects in non-Hermitian systems
- Degeneracy and defectiveness in non-Hermitian systems with open boundary
- Hybrid scale-free skin effect in non-Hermitian systems: A transfer matrix approach
- Exact formulas of the end-to-end Green's functions in non-Hermitian systems
- Steady-state edge burst: From free-particle systems to interaction-induced phenomena
- A Tropical Geometric Approach To Exceptional Points
- Symmetric non-Hermitian skin effect with emergent nonlocal correspondence
Cited by in corpus (5)
- General theory for infernal points in non-Hermitian systems
- Parsing skin effect in a non-Hermitian spinless BHZ-like model
- Theory for the spectral splitting exponent of exceptional points
- Gauge Field Induced Unconventional Skin Effect in Spinful Non-Hermitian Systems
- Wiener-Hopf factorization and non-Hermitian topology for Amoeba formulation in one-dimensional multiband systems