arXiv · 1711.07241
Floquet prethermalization in the resonantly driven Hubbard model
Abstract
We demonstrate the existence of long-lived prethermalized states in the Mott insulating Hubbard model driven by periodic electric fields. These states, which also exist in the resonantly driven case with a large density of photo-induced doublons and holons, are characterized by a nonzero current and an effective temperature of the doublons and holons which depends sensitively on the driving condition. Focusing on the specific case of resonantly driven models whose effective time-independent Hamiltonian in the high-frequency driving limit corresponds to noninteracting fermions, we show that the time evolution of the double occupation can be reproduced by the effective Hamiltonian, and that the prethermalization plateaus at finite driving frequency are controlled by the next-to-leading order correction in the high-frequency expansion of the effective Hamiltonian. We propose a numerical procedure to determine an effective Hubbard interaction that mimics the correlation effects induced by these higher order terms.
Explore related subjects
Keep this discovery
Andreas Herrmann, Yuta Murakami, Martin Eckstein, Philipp Werner. 2017-11-20. Floquet prethermalization in the resonantly driven Hubbard model. https://doi.org/10.1209/0295-5075%2F120%2F57001
Cite the original work for its findings. Save a collection to share your selection of sources.