English

Utilizing high-$p_\perp$ theory and data to constrain the initial stages of quark-gluon plasma

High Energy Physics - Phenomenology 2022-03-23 v1 Nuclear Theory

Abstract

The scarce knowledge of the initial stages of quark-gluon plasma before the thermalization is mostly inferred through the low-pp_\perp sector. We propose a complementary approach in this report - the use of high-pp_\perp probes' energy loss. We study the effects of four commonly assumed initial stages, whose temperature profiles differ only before the thermalization, on high-pp_\perp RAAR_{AA} and v2v_2 predictions. The predictions are based on our Dynamical Radiative and Elastic ENergy-loss Approach (DREENA) framework. We report insensitivity of v2v_2 to the initial stages, making it unable to distinguish between different cases. RAAR_{AA} displays sensitivity to the presumed initial stages, but current experimental precision does not allow resolution between these cases. We further revise the commonly accepted procedure of fitting the energy loss parameters, for each individual initial stage, to the measured RAAR_{AA}. We show that the sensitivity of v2v_2 to various initial stages obtained through such procedure is mostly a consequence of fitting procedure, which may obscure the physical interpretations. Overall, the simultaneous study of high-pp_\perp observables, with unchanged energy loss parametrization and restrained temperature profiles, is crucial for future constraints on initial stages.

Keywords

Cite

@article{arxiv.2203.11883,
  title  = {Utilizing high-$p_\perp$ theory and data to constrain the initial stages of quark-gluon plasma},
  author = {Bojana Ilic and Dusan Zigic and Marko Djordjevic and Magdalena Djordjevic},
  journal= {arXiv preprint arXiv:2203.11883},
  year   = {2022}
}

Comments

12 pages, 5 figures