Inflation of fireballs, the gluon wind and the homogeneity of the HBT radii at RHIC
arXiv:nucl-th/0206051 · doi:10.1556/APH.17.2003.2-4.12
Abstract
We solve analytically the ellipsoidally expanding fireball hydrodynamics with source terms in the momentum and the energy equations, using the non-relativistic approximation. We find that energy transport from high pt jets of gluons to the medium leads to a transient, exponential inflation of the fireballs created in high energy heavy ion collisions. In this transient, inflatory period, the slopes of the single particle spectra increase, while the HBT radius parameters decrease exponentially with time. This effect is shown to be similar to the development of the homogeneity of our Universe due to an inflatory period. Independently of the initial conditions, and the exact value of the freeze-out time and temperature, the meausurables (single particle spectra, the correlation functions, the slope parameters, elliptic flow, HBT radii and cross terms) become time independent during the late, non-inflatory stages of the expansion, and they satisfy new kind of scaling laws. If the expansion starts with a transient inflation caused by the gluon wind, it leads naturally to large transverse flows and the simultaneous equality and scaling behaviour of the HBT radius parameters, R_{side} \approx R_{out} \approx R_{long} \approx t_f \sqrt{T_f/m}. With certain relativistic corrections, the scaling limit is τ_f \sqrt{T_f/m_t}, where m_t is the mean transverse mass of the pair.
14 pages, 4 figures, uses budapest1.sty, Heavy Ion Physics in press
References in corpus (2)
Cited by in corpus (16)
- Hadron Production and Phase Changes in Relativistic Heavy Ion Collisions
- Buda-Lund hydro model for ellipsoidally symmetric fireballs and the elliptic flow at RHIC
- Indication of quark deconfinement and evidence for a Hubble flow in 130 and 200 GeV Au+Au collisions
- Pion Interferometry for a Granular Source of Quark-Gluon Plasma Droplets
- Analysis of pion elliptic flows and HBT interferometry in a granular quark-gluon plasma droplet model
- Review of HBT or Bose-Einstein correlations in high energy heavy ion collisions
- Interplay among the azimuthally dependent HBT radii and the elliptic flow
- Signature of Granular Structures by Single-Event Intensity Interferometry
- Hadronization of Expanding QGP
- The reconstructed final state of Au + Au collisions from PHENIX and STAR data at sqrt{s}=130 AGeV - indication for quark deconfinement at RHIC
- Scaling properties of spectra in new exact solutions of rotating, multi-component fireball hydrodynamics
- Strangeness and the discovery of quark-gluon plasma
- Universal scaling of the rapidity dependent elliptic flow and the perfect fluid at RHIC
- A hint at quark deconfinement in 200 GeV Au+Au data at RHIC
- New, spherical solutions of non-relativistic, dissipative hydrodynamics
- Strangeness and thresholds of phase changes in relativistic heavy ion collisions