Jet quenching parameter in an expanding QCD plasma
Abstract
We study the phenomenon of transverse momentum broadening for a high- parton propagating through a weakly-coupled quark-gluon plasma undergoing boost-invariant longitudinal expansion. We propose a boost-invariant description for this phenomenon, in which the broadening refers to the angular variables (the pseudo-rapidity) and (the azimuthal angle). The jet quenching parameter which enters this description depends upon the proper time alone. We furthermore consider radiative corrections to . As in the case of a static medium, we find potentially large corrections enhanced by a double logarithm. But unlike for the static medium, these corrections are now local in time: they depend upon the local (proper) time characterizing the expansion, and not upon the overall path length. We resum such corrections to all orders into a renormalized jet quenching parameter. The main effect of this resummation is to slow down the decrease of with increasing proper time.
Cite
@article{arxiv.1806.07177,
title = {Jet quenching parameter in an expanding QCD plasma},
author = {Edmond Iancu and Pieter Taels and Bin Wu},
journal= {arXiv preprint arXiv:1806.07177},
year = {2018}
}