Quantitative measure of topological protection in Floquet systems through the spectral localizer
arXiv:2410.24176 · doi:10.1103/3y9q-jpbm
Abstract
The standard understanding of topological protection from band theory is that a system's topology cannot change without first closing the bulk band gap. However, in Floquet systems, this typical definition of topological protection is one step removed from the experimentally accessible system parameters, as the relationship between the disorder in a system's instantaneous Hamiltonian and its Floquet Hamiltonian that defines its topology is not straightforward. Here, we demonstrate that the spectral localizer framework for classifying material topology can be applied to Floquet systems and prove that its associated measure of topological protection can be understood in terms of the integrated disorder across the system's instantaneous Hamiltonians. As such, we have derived a quantitative bound on a Floquet system's topological protection in terms of the instantaneous system. Moreover, we show the utility of these bounds in both ordinary an anomalous Floquet Chern insulators.
6 pages, 4 figures
References in corpus (15)
- Classification of topological insulators and superconductors in three spatial dimensions
- Disorder-induced Floquet Topological Insulators
- Tight-binding methods for general longitudinally driven photonic lattices -- edge states and solitons
- Local invariants identify topology in metals and gapless systems
- An operator-based approach to topological photonics
- Local markers for crystalline topology
- Floquet topological insulator laser
- Quadratic pseudospectrum for identifying localized states
- Classifying topology in photonic heterostructures with gapless environments
- Anomalous quantum Hall effect of light in Bloch-wave modulated photonic crystals
- Mixed higher-order topology: boundary non-Hermitian skin effect induced by a Floquet bulk
- Probing topology in nonlinear topological materials using numerical -theory
- Real-space topological invariant for time-quasiperiodic Majoranas
- The Streda Formula for Floquet Systems: Topological Invariants and Quantized Anomalies from Cesaro Summation
- Local and energy-resolved topological invariants for Floquet systems