Cone-Dependent Jet Collisional Energy Loss in Finite QCD Medium
Abstract
We derive a compact HTL-resummed expression for the leading-order jet collisional energy loss in a finite-size, finite-temperature QCD medium. Defining the jet energy inside a cone of radius , we obtain the out-of-cone elastic energy loss with an explicit separation between contributions from the primary jet parton and recoiling medium partons. The result reproduces the known partonic limit as , vanishes for , and applies to both light- and heavy-flavor jets. Numerically, the elastic component shows a pronounced non-linear dependence relative to the radiative baseline, and its importance increases with , becoming comparable to or exceeding the radiative contribution for sufficiently large jet radii. The path-length dependence remains close to linear for all , while the medium-response contribution can exceed for realistic jet radii.
Cite
@article{arxiv.2601.21655,
title = {Cone-Dependent Jet Collisional Energy Loss in Finite QCD Medium},
author = {Magdalena Djordjevic and Bojana Ilic and Marko Djordjevic},
journal= {arXiv preprint arXiv:2601.21655},
year = {2026}
}
Comments
7 pages, 4 figures