Jet quenching and scaling properties of medium-evolved gluon cascade in expanding media
Abstract
We present a study of the impact of the expansion of deconfined medium on single-gluon emission spectra and the jet suppression factor () within the BDMPS-Z formalism. These quantities are calculated for three types of media (static medium, exponentially decaying medium and Bjorken expanding medium). The distribution of medium-induced gluons and the jet are calculated using the evaluation of in-medium evolution with splitting kernels derived from the gluon emission spectra. Scaling behavior of splitting kernels is derived for low-x and high-x regimes in the asymptote of large times and its impact on the resulting jet is discussed. For the full phase space of the radiation, the scaling of jet with an effective quenching parameter is presented.
Keywords
Cite
@article{arxiv.2009.03122,
title = {Jet quenching and scaling properties of medium-evolved gluon cascade in expanding media},
author = {Souvik Priyam Adhya and Carlos A. Salgado and Martin Spousta and Konrad Tywoniuk},
journal= {arXiv preprint arXiv:2009.03122},
year = {2020}
}
Comments
4 pages, 7 figures, 10th International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear Collisions (Hard Probes 2020), 1-6 June 2020, Austin, Texas