Reaction dynamics in Pb+Pb at the CERN/SPS: from partonic degrees of freedom to freeze-out
arXiv:nucl-th/9810077 · doi:10.1016/S0146-6410(99)00086-1
Abstract
We analyze the reaction dynamics of central Pb+Pb collisions at 160 GeV/nucleon. First we estimate the energy density pile-up at mid-rapidity and calculate its excitation function: The energy density is decomposed into hadronic and partonic contributions. A detailed analysis of the collision dynamics in the framework of a microscopic transport model shows the importance of partonic degrees of freedom and rescattering of leading (di)quarks in the early phase of the reaction for E > 30 GeV/nucleon. The energy density reaches up to 4 GeV/fm^3, 95% of which are contained in partonic degrees of freedom. It is shown that cells of hadronic matter, after the early reaction phase, can be viewed as nearly chemically equilibrated. This matter never exceeds energy densities of 0.4 GeV/fm^3, i.e. a density above which the notion of separated hadrons loses its meaning. The final reaction stage is analyzed in terms of hadron ratios, freeze-out distributions and a source analysis for final state pions.
10 pages, 7 figures, Proceedings of the Erice School on Nuclear Physics in Erice, Sicily, Italy, September 17 -25 1998; to be published in Progress in Particle and Nuclear Physics Vol. 42
References in corpus (4)
- Microscopic Models for Ultrarelativistic Heavy Ion Collisions
- VNI-3.1: MC-simulation program to study high-energy particle collisions in QCD by space-time evolution of parton-cascades and parton-hadron conversion
- J/Ψproduction, polarization and Color Fluctuations
- Hadronic Observables: Theoretical Highlights
Cited by in corpus (16)
- A Multi-Phase Transport model for nuclear collisions at RHIC
- Open charm production in relativistic nucleus-nucleus collisions
- Ratios of charged antiparticles to particles near mid-rapidity in Au+Au collisions at sqrt(s_NN) = 130 GeV
- Nambu Jona Lasinio model with proper time regularization in a finite volume
- Strangeness equilibration in heavy ion collisions
- Anisotropic flow at RHIC: How unique is the number-of-constituent-quark scaling?
- Finite-volume and magnetic effects on the phase structure of the three-flavor Nambu--Jona-Lasinio model
- Transverse energy from minijets in ultrarelativistic nuclear collisions: a next-to-leading order analysis
- Continuous Decoupling of Dynamically Expanding Systems
- Phi Mesons from a Hadronic Fireball
- Boundary effects on constituent quark masses and on chiral susceptibility in a four-fermion interaction model
- Nambu-Jona-Lasinio model in a sphere
- Properties of neutral mesons in a hot and magnetized quark matter: size-dependent effects
- Dynamical interpretation of chemical freeze-out in heavy ion collisions
- Inverse magnetic catalysis and size-dependent effects on the chiral symmetry restoration
- Dilepton Production in Transport Calculations and Coarse-Grained Dynamics