Topological transitions controlled by the interaction range
arXiv:2509.24682 · doi:10.1103/y9vn-bbnk
Abstract
We study a one-dimensional topological model featuring a Su-Schrieffer-Heeger type pattern of nearest-neighbor couplings in combination with the longer-range interactions exponentially decaying with the distance. We demonstrate that even relatively weak long-range couplings can trigger the topological transition if their range is large enough. This provides an additional facet in the control of topological phases.
References in corpus (19)
- Topological Insulators
- Berry Phase Effects on Electronic Properties
- Topological Photonics
- Topological Photonics
- Photonic Floquet Topological Insulators
- Photonic Analogue of Two-dimensional Topological Insulators and Helical One-Way Edge Transport in Bi-Anisotropic Metamaterials
- Imaging topological edge states in silicon photonics
- Topological Bands for Ultracold Atoms
- Catalogue of Topological Electronic Materials
- Exciton-polariton topological insulator
- Topological Polaritons
- Topological quantum matter with cold atoms
- Interplay between long range hopping and disorder in topological systems
- Realizing a dynamical topological phase in a trapped-ion quantum simulator
- Higher-order topological states mediated by long-range coupling in -symmetric lattices
- Topological edge states in periodically-driven trapped-ion chains
- Existence of a negative next-nearest-neighbor coupling in evanescently coupled dielectric waveguides
- Constructing the spin-1 Haldane phase on a qudit quantum processor
- Floquet control of interactions and edge states in a programmable quantum simulator