English

Thermal photons as a quark-gluon plasma thermometer revisited

Nuclear Theory 2014-05-02 v4 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Photons are a penetrating probe of the hot medium formed in heavy-ion collisions, but they are emitted from all collision stages. At photon energies below 2-3 GeV, the measured photon spectra are approximately exponential and can be characterized by their inverse logarithmic slope, often called "effective temperature" TeffT_\mathrm{eff}. Modelling the evolution of the radiating medium hydrodynamically, we analyze the factors controlling the value of TeffT_\mathrm{eff} and how it is related to the evolving true temperature TT of the fireball. We find that at RHIC and LHC energies most photons are emitted from fireball regions with TTcT{\,\sim\,}T_\mathrm{c} near the quark-hadron phase transition, but that their effective temperature is significantly enhanced by strong radial flow. Although a very hot, high pressure early collision stage is required for generating this radial flow, we demonstrate that the experimentally measured large effective photon temperatures Teff>TcT_\mathrm{eff}{\,>\,}T_\mathrm{c}, taken alone, do not prove that any electromagnetic radiation was actually emitted from regions with true temperatures well above TcT_\mathrm{c}. We explore tools that can help to provide additional evidence for the relative weight of photon emission from the early quark-gluon and late hadronic phases. We find that the recently measured centrality dependence of the total thermal photon yield requires a larger contribution from late emission than presently encoded in our hydrodynamic model.

Keywords

Cite

@article{arxiv.1308.2440,
  title  = {Thermal photons as a quark-gluon plasma thermometer revisited},
  author = {Chun Shen and Ulrich W. Heinz and Jean-Francois Paquet and Charles Gale},
  journal= {arXiv preprint arXiv:1308.2440},
  year   = {2014}
}

Comments

9 pages, 6 figures. Changes from version 2: Added two lines to Fig. 1 and two footnotes. Title slightly changed by journal