Equation of state and initial temperature of quark gluon plasma at RHIC
arXiv:1101.1279 · doi:10.2478/s11534-012-0060-9
Abstract
In gold-gold collisions of the Relativistic Heavy Ion Collider (RHIC) a perfect fluid of quarks, sometimes called the strongly interacting quark gluon plasma (sQGP) is created for an extremely short time. The time evolution of this fluid can be described by hydrodynamical models. After expansion and cooling, the freeze-out happens and hadrons are created. Their distribution reveals information about the final state of the fluid. To investigate the time evolution one needs to analyze penetrating probes, such as direct photon observables. Transverse momentum distributions of low energy direct photons were mesured in 2010 by PHENIX, while azimuthal asymmetry in 2011. These measurements can be compared to hydrodynamics to determine the equation of state and the initial temperature of sQGP. In this paper we analyze an 1+3 dimensional solution of relativistic hydrodynamics. We calculate momentum distribution, azimuthal asymmetry and momentum correlations of direct photons. Based on earlier fits to hadronic spectra, we compare photon calculations to measurements to determine the equation of state and the initial temperature of sQGP. We find that the initial temperature in the center of the fireball is 507+-12 MeV, while for the sound speed we get a speed of sound of 0.36+-0.02. We also estimate a systematic error of these results. We find that the measured azimuthal asymmetry is also not incompatible with this model, and predict a photon source that is significantly larger in the out direction than in the side direction.
12 pages, 4 figures. This work was supported by the OTKA grant NK-73143 and NK-101438 and M. Csanad's Bolyai scholarship
References in corpus (5)
- The QCD equation of state with dynamical quarks
- Scaling properties of azimuthal anisotropy in Au+Au and Cu+Cu collisions at sqrt(s_NN) = 200 GeV
- Has the QCD Critical Point been Signaled by Observations at RHIC ?
- Unified description of Bjorken and Landau 1+1 hydrodynamics
- A New Family of Simple Solutions of Perfect Fluid Hydrodynamics
Cited by in corpus (13)
- A perturbative framework for jet quenching
- Exact solutions of relativistic perfect fluid hydrodynamics for a QCD equation of state
- Initial energy density of 7 and 8 TeV p+p collisions at the LHC
- New exact solutions of relativistic hydrodynamics for longitudinally expanding fireballs
- Accelerating hydrodynamic description of pseudorapidity density and the initial energy density in p+p, Cu+Cu, Au+Au, and Pb+Pb collisions at RHIC and LHC
- Initial-state temperature of light meson emission source from squared momentum transfer spectra in high-energy collisions
- Initial- and final-state temperatures of emission source from differential cross-section in squared momentum transfer in high energy collisions
- Excitation function of initial temperature of heavy flavor quarkonium emission source in high energy collisions
- Excitation functions of related temperatures of η and η0 emission sources from squared momentum transfer spectra in high-energy collisions
- Dilepton creation based on an analytic hydrodynamic solution
- Scaling behaviour of in high-energy collisions
- Oscillating HBT radii and the time evolution of the source - sqrt(s_NN) = 200 GeV Au+Au data analyzed with azimuthally sensitive Buda-Lund hydro model
- Perturbative accelerating solutions of relativistic hydrodynamics