English

Exponentially Slow Heating in Short and Long-range Interacting Floquet Systems

Quantum Physics 2020-01-01 v1 Quantum Gases Statistical Mechanics Strongly Correlated Electrons

Abstract

We analyze the dynamics of periodically-driven (Floquet) Hamiltonians with short- and long-range interactions, finding clear evidence for a thermalization time, τ\tau^*, that increases exponentially with the drive frequency. We observe this behavior, both in systems with short-ranged interactions, where our results are consistent with rigorous bounds, and in systems with long-range interactions, where such bounds do not exist at present. Using a combination of heating and entanglement dynamics, we explicitly extract the effective energy scale controlling the rate of thermalization. Finally, we demonstrate that for times shorter than τ\tau^*, the dynamics of the system is well-approximated by evolution under a time-independent Hamiltonian DeffD_{\mathrm{eff}}, for both short- and long-range interacting systems.

Keywords

Cite

@article{arxiv.1708.01620,
  title  = {Exponentially Slow Heating in Short and Long-range Interacting Floquet Systems},
  author = {Francisco Machado and Gregory D. Meyer and Dominic V. Else and Chetan Nayak and Norman Y. Yao},
  journal= {arXiv preprint arXiv:1708.01620},
  year   = {2020}
}

Comments

6+7 pages, 4+8 figures

R2 v1 2026-06-22T21:07:18.987Z