paper

Modification of jet-energy flow in heavy-ion collisions

arXiv:2606.20061

Abstract

The ALICE Collaboration presents the first measurements of the jet-energy flow () observable in proton-proton and heavy-ion collisions. Jets are excellent probes for the quarkgluon plasma, a deconfined state of matter produced in heavy-ion collisions. The jet-energy flow observable characterizes the radial distribution of energy from the jet axis in an infrared and collinear-safe way and is sensitive to medium-induced parton-shower modifications. Inclusive charged jets are measured in PbPb collisions at TeV for the transverse-momentum interval 6080 GeV/. For pp collisions at TeV, measurements include the 4060 and 6080 GeV/ intervals, where the latter serves as the reference for investigating medium-induced modifications. Results show that most parton energy is concentrated in the jet core, with a clear suppression of energy flow in heavy-ion collisions at larger radii (significance 3.54.5) indicating a narrowing of the energy flow. While all models -- PYTHIA 8, HERWIG, JEWEL, and JETSCAPE -- reproduce the pp results with only small deviations in the tails, the relative modification in PbPb collisions is well described by JEWEL without recoil. Conversely, JEWEL with recoil (medium response) and JETSCAPE show significant deviations, exhibiting increasing or more constant trends with radius that are disfavored by the data.

24 pages, 7 captioned figures, 3 tables, authors from page 19, submitted to PPP, figures at http://alice-publications.web.cern.ch/node/13376