Theory of Out-of-Time-Ordered Transport
Abstract
We construct an effective field theory (EFT) that captures the universal behavior of out-of-time-order correlators (OTOCs) at late times in generic quantum many-body systems with conservation laws. The EFT hinges on a generalization of the strong-to-weak spontaneous symmetry breaking pattern adapted to out-of-time-order observables, and reduces to conventional fluctuating hydrodynamics when time-ordered observables are probed. We use the EFT to explain different power-law behavior observed in OTOCs at late times, and show that many OTOCs are entirely fixed by conventional transport data. Nevertheless, we show that a specific combination of OTOCs is sensitive to novel transport parameters, not visible in regular time-ordered correlators. We test our predictions in Hamiltonian and Floquet spin chains in one dimension.
Keywords
Cite
@article{arxiv.2512.11198,
title = {Theory of Out-of-Time-Ordered Transport},
author = {Ruchira Mishra and Jiaozi Wang and Silvia Pappalardi and Luca V. Delacrétaz},
journal= {arXiv preprint arXiv:2512.11198},
year = {2026}
}
Comments
11+9 pages, 13 figures, (v2: fixed Fig. 6, added appendix and references)