arXiv · 1211.5381
Topological Rényi entropy after a quantum quench
Abstract
We present an analytical study on the resilience of topological order after a quantum quench. The system is initially prepared in the ground state of the toric-code model, and then quenched by switching on an external magnetic field. During the subsequent time evolution, the variation in topological order is detected via the topological Renyi entropy of order 2. We consider two different quenches: the first one has an exact solution, while the second one requires perturbation theory. In both cases, we find that the long-term time average of the topological Renyi entropy in the thermodynamic limit is the same as its initial value. Based on our results, we argue that topological order is resilient against a wide range of quenches.
Explore related subjects
Keep this discovery
Gábor B. Halász, Alioscia Hamma. 2013-05-23. Topological Rényi entropy after a quantum quench. https://doi.org/10.1103/physrevlett.110.170605
Cite the original work for its findings. Save a collection to share your selection of sources.