Information Trapping by Topologically Protected Edge States: Scrambling and the Butterfly Velocity
arXiv:2306.00527 · doi:10.1103/PhysRevB.108.184303
Abstract
Topological insulators and superconductors have attracted considerable attention, and many different theoretical tools have been used to gain insight into their properties. Here we investigate how perturbations can spread through exemplary one-dimensional topological insulators and superconductors using out-of-time ordered correlators. Out-of-time ordered correlators are often used to consider how information becomes scrambled during quantum dynamics. The wavefront of the out-of-time ordered correlator can be ballistic regardless of the underlying system dynamics, and here we confirm that for topological free fermion systems the wavefront spreads linearly at a characteristic butterfly velocity. We pay special attention to the topologically protected edge states, finding that "information" can become trapped in the edge states and essentially decoupled from the bulk, surviving for relatively long times. We consider different models with multiple possible edge states coexisting on a single edge.
References in corpus (17)
- Topological Defects and Gapless Modes in Insulators and Superconductors
- Topologically Robust Transport of Photons in a Synthetic Gauge Field
- Slow scrambling in disordered quantum systems
- Topological classification of dynamical phase transitions
- Decoherence induced by interacting quantum spin baths
- Relating out-of-time-order correlations to entanglement via multiple-quantum coherences
- Boundary Fidelity and Entanglement in the symmetry protected topological phase of the SSH model
- Minimal Model for Fast Scrambling
- Non-ergodicity in the Anisotropic Dicke model
- Out-of-time-order correlations and Floquet dynamical quantum phase transition
- Quasiperiodic dynamical quantum phase transitions in multiband topological insulators and connections with entanglement entropy and fidelity susceptibility
- Out-of-Time-Order Correlation as a Witness for Topological Phase Transitions
- Dynamical bulk boundary correspondence and dynamical quantum phase transitions in higher order topological insulators
- Proposal for measuring out-of-time-ordered correlators at finite temperature with coupled spin chains
- Dynamical Phase Transitions in Topological Insulators
- Quantum information spreading in random spin chains with topological order
- Directional scrambling of quantum information in helical multiferroics