Thermal photons from heavy ion collisions: A spectral function approach
Nuclear Theory
2010-12-23 v1
Abstract
We analyze the photon rates from a hadronic gas in equilibrium using chiral reduction formulas and a density expansion. The chiral reduction is carried to second order in the pion density which in principal includes all kinetic processes of the type and . The resulting rates are encoded in the form of vacuum correlation functions which are amenable to experiment. The hadronic rates computed in this work along with the known perturbative QGP rates are integrated over the space-time evolution of a hydrodynamic model tuned to hadronic observables. The resulting yields are compared to the recent photon and low mass dilepton measurements at the SPS and RHIC. Predictions for the LHC are made.
Keywords
Cite
@article{arxiv.0911.2426,
title = {Thermal photons from heavy ion collisions: A spectral function approach},
author = {Kevin Dusling and Ismail Zahed},
journal= {arXiv preprint arXiv:0911.2426},
year = {2010}
}