English

Initial temperature and EoS of quark matter from direct photons

Nuclear Theory 2016-10-25 v2

Abstract

The time evolution of the quark gluon plasma created in gold-gold collisions of the Relativistic Heavy Ion Collider (RHIC) can be described by hydrodynamical models. Distribution of hadrons reflects the freeze-out state of the matter. To investigate the time evolution one needs to analyze penetrating probes, such as direct photon spectra. Distributions of low energy photons was published in 2010 by PHENIX. In this paper we analyze a 3+1 dimensional solution of relativistic hydrodynamics and calculate momentum distribution of direct photons. Using earlier fits of this model to hadronic spectra, we compare photon calculations to measurements and find that the initial temperature of the center of the fireball is at least 519+-12 MeV, while for the equation of state we get c_s= 0.36+-0.02.

Keywords

Cite

@article{arxiv.1101.1280,
  title  = {Initial temperature and EoS of quark matter from direct photons},
  author = {Mate Csanad and Imre Majer},
  journal= {arXiv preprint arXiv:1101.1280},
  year   = {2016}
}

Comments

Talk at the VI Workshop on Particle Correlations and Femtoscopy, Kiev, September 14-18, 2010. 6 pages, 1 figure. This work was supported by the OTKA grant NK73143 and M. Csanad's Bolyai scholarship