English

Lieb-Robinson and the butterfly effect

High Energy Physics - Theory 2016-08-31 v2 Quantum Gases Strongly Correlated Electrons Quantum Physics

Abstract

As experiments are increasingly able to probe the quantum dynamics of systems with many degrees of freedom, it is interesting to probe fundamental bounds on the dynamics of quantum information. We elaborate on the relationship between one such bound---the Lieb-Robinson bound---and the butterfly effect in strongly-coupled quantum systems. The butterfly effect implies the ballistic growth of local operators in time, which can be quantified with the "butterfly" velocity vBv_B. Similarly, the Lieb-Robinson velocity places a state independent ballistic upper bound on the size of time evolved operators in non-relativistic lattice models. Here, we argue that vBv_B is a state-dependent effective Lieb-Robinson velocity. We study the butterfly velocity in a wide variety of quantum field theories using holography and compare with free particle computations to understand the role of strong coupling. We find that, depending on the way length and time scale, vBv_B acquires a temperature dependence and decreases towards the IR. We also comment on experimental prospects and on the relationship between the butterfly velocity and signaling.

Keywords

Cite

@article{arxiv.1603.09298,
  title  = {Lieb-Robinson and the butterfly effect},
  author = {Daniel A. Roberts and Brian Swingle},
  journal= {arXiv preprint arXiv:1603.09298},
  year   = {2016}
}

Comments

5+5 pages, 0 figures. v2: updated references and additional clarifications

R2 v1 2026-06-22T13:21:42.142Z