: Non-Hermitian (NH) quasicrystals have been a topic of increasing interest in current research, particularly in the context of NH topological physics and materials science. Recently, it has been suggested and experimentally demonstrated using synthetic photonic lattices that a class of NH quasicrystals can feature topological spectral phase transitions. Here we consider a NH quasicrystal with a uniformly-drifting (sliding) incommensurate potential and show that, owing to violation of Galilean invariance, the topological phase transition is washed out and the quasicrystal is always in the delocalized phase with an entirely real-energy spectrum. The results are illustrated by considering quantum walks in synthetic photonic lattices
We show that it is possible to have a topological phase in two-dimensional quasicrystals without any...
Bloch-Zener oscillations (BZO), i.e., the interplay between Bloch oscillations and Zener tunneling i...
Optical superlattices with sublattice symmetry subjected to a synthetic imaginary gauge field underg...
Non-Hermiticity significantly enriches the properties of topological models, leading to exotic featu...
Anderson localization, i.e. the suppression of diffusion in lattices with random or incommensurate d...
In non-Hermitian quasicrystals, mobility edges (ME) separating localized and extended states in the ...
In non-Hermitian quasicrystals, mobility edges (ME) separating localized and extended states in comp...
The discovery of topological phases in non-Hermitian open classical and quantum systems challenges o...
Phase transitions connect different states of matter and are often concomitant with the spontaneous ...
Non-Hermitian quasicrystal forms a unique class of matter with symmetry-breaking, localization and t...
We investigate the energy spectral phase transitions arising in one-dimensional superlattices under ...
Non-Hermitian topological phases have gained immense attention due to their potential to unlock nove...
Non-Hermitian quasicrystal constitutes a unique class of disordered open system with PT-symmetry bre...
We show that it is possible to have a topological phase in two-dimensional quasicrystals without any...
Bloch-Zener oscillations (BZO), i.e., the interplay between Bloch oscillations and Zener tunneling i...
Optical superlattices with sublattice symmetry subjected to a synthetic imaginary gauge field underg...
Non-Hermiticity significantly enriches the properties of topological models, leading to exotic featu...
Anderson localization, i.e. the suppression of diffusion in lattices with random or incommensurate d...
In non-Hermitian quasicrystals, mobility edges (ME) separating localized and extended states in the ...
In non-Hermitian quasicrystals, mobility edges (ME) separating localized and extended states in comp...
The discovery of topological phases in non-Hermitian open classical and quantum systems challenges o...
Phase transitions connect different states of matter and are often concomitant with the spontaneous ...
Non-Hermitian quasicrystal forms a unique class of matter with symmetry-breaking, localization and t...
We investigate the energy spectral phase transitions arising in one-dimensional superlattices under ...
Non-Hermitian topological phases have gained immense attention due to their potential to unlock nove...
Non-Hermitian quasicrystal constitutes a unique class of disordered open system with PT-symmetry bre...
We show that it is possible to have a topological phase in two-dimensional quasicrystals without any...
Bloch-Zener oscillations (BZO), i.e., the interplay between Bloch oscillations and Zener tunneling i...
Optical superlattices with sublattice symmetry subjected to a synthetic imaginary gauge field underg...