Space-time evolution of ultra-relativistic heavy ion collisions and hadronic spectra
arXiv:nucl-th/0201047 · doi:10.1016/S0375-9474(02)01074-6
Abstract
The space-time evolution of the hot and dense matter formed after the collisions of heavy nuclei at ultra-relativistic energies is investigated using (3+1) dimensional hydrodynamical models. The effects of the spectral shift of the hadronic properties are incorporated in the equation of state (EOS) of the evolving matter. In-medium shift of hadronic properties are considered for Quantum Hadrodynamics (QHD) and universal scaling scenarios. It is found that the EOS for the hadronic matter for universal scaling of hadronic masses (except pseudoscalar mesons) is similar to the recent lattice results. We observe that the space-time volume of the hadronic matter at the freeze-out is considerably different from the one when medium effects on the hadrons are ignored. The sensitivity of the results on the initial radial velocity profile is investigated. The transverse mass spectra of pions and protons of NA49 collaboration are analyzed.
Total 17 pages with 18 figures
References in corpus (4)
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Cited by in corpus (6)
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- J/ψ$ Gluonic Dissociation Revisited : III. Effects of Transverse Hydrodynamic Flow
- Thermal photon to dilepton ratio in ultra-relativistic heavy ion collisions
- Lepton interferometry in relativistic heavy ion collisions - a case study