Imaging non-hydrodynamic modes with jet wakes
Abstract
While studies of ultra-relativistic heavy-ion collisions have established that the quark--gluon plasma exhibits hydrodynamic behavior, direct signatures of non-hydrodynamic modes have remained elusive, and no observable is known to be exclusively sensitive to them. Here, we show that the angular structure of the jet wake provides such a probe. In the long-wavelength limit, hydrodynamics contributes only to the lowest angular moments of the detector image of the jet wake, while higher moments directly encode microscopic non-equilibrium dynamics. The jet wake thus serves as a spectroscopic probe of the medium's non-hydrodynamic sector. We develop a general kinetic-theory framework relating the angular moments of the late-time energy flux generated by a jet to the relaxation spectrum of the collision operator. In all models considered, non-hydrodynamic modes leave distinct imprints on the higher angular moments. Our results motivate precision measurements of the higher angular moments of the negative jet wake.
Cite
@article{arxiv.2607.26851,
title = {Imaging non-hydrodynamic modes with jet wakes},
author = {Aleksi Kurkela and Ian Moult and Alexander Soloviev and Urs Achim Wiedemann},
journal= {arXiv preprint arXiv:2607.26851},
year = {2026}
}
Comments
5 pages + appendix, 3 figures