Statistical hadronization phenomenology in heavy ion collisions at SPS and RHIC energies
arXiv:nucl-th/0405026
Abstract
This dissertation examines the phenomenology of statistical hadronization at ultrarelativistic energies. We start with an overview of current experimental and theoretical issues in Relativistic heavy ion physics. We then introduce statistical hadronization, and show how it gives a description of particle abundances and spectra through covariance and entropy maximization. We argue that a distinction can be made between equilibrated staged freeze-out in which post-formation hadron interactions play an important role in determining final-state observables, and non-equilibrium sudden freeze-out where spectra and abundances get determined at the same time and further interactions are negligible. We attempt to falsify sudden freeze-out by examining whether particle abundances and spectra can be described using the same formation temperature. This is done both in the equilibrium framework, and using a chemical non-equilibrium ansatz. Our fits to experimental data suggest that the sudden freeze-out model explains both the particle abundances and spectra. We then try to extract the particle formation temperature, and quantify post-freeze-out hadronic interactions using experimentally observable resonances. We discuss observed resonances and suggest further measurements that have the potential to distinguish between the possible freeze-out scenarios experimentally. Finally, we infer from experimental data how particle formation proceeds in spacetime, in particular whether freeze-out dynamics agrees with the sudden freeze-out expectation. We examine particle spectra, and show that they are not sensitive enough to pick the right freeze-out dynamics. We suggest resonances and azimuthal anisotropy as experimental probes for this task.
PhD dissertation, as accepted by the University of Arizona, 204 pages
References in corpus (24)
- Hadron production in heavy ion collisions: Fragmentation and recombination from a dense parton phase
- Observation of an Exotic Baryon in Exclusive Photoproduction from the Deuteron
- Observation of an Exotic S = -2, Q = -2 Baryon Resonance in Proton-Proton Collisions at the CERN SPS
- Charged Meson Rapidity Distributions in central Au+Au Collisions at sqrt(s_nn) = 200 GeV
- Azimuthal anisotropy at RHIC: the first and fourth harmonics
- SHARE: Statistical Hadronization with Resonances
- Multi-Strange Baryon Production in Au-Au collisions at sqrt(s_NN) = 130 GeV
- Resonance decay effects on anisotropy parameters
- Study of QCD thermodynamics at finite density by Taylor expansion
- v4: A small, but sensitive observable for heavy ion collisions
- Dynamics and freeze-out of hadron resonances at RHIC
- Evidence for nonhadronic degrees of freedom in the transverse mass spectra of kaons from relativistic nucleus-nucleus collisions?
- Description of the particle ratios and transverse-momentum spectra for various centralities at RHIC in a single-freeze-out model
- Production of the exotic Theta baryon in relativistic nuclear collisions
- Almost exponential transverse spectra from power law spectra
- Energy Scan Program at the Cern SPS and An Observation of the Deconfinement Phase Transition in Nucleus--Nucleus Collisions
- Strange Pentaquark Hadrons in Statistical Hadronization
- Particle Production at Very Low Transverse Momenta in Au+Au Collisions at s(NN)**1/2 = 200 GeV
- Does HBT Measure the Freeze-out Source Distribution?
- Thermal production of the meson in the channel
- The electromagnetic signature of jets
- Boundary Conditions of the Hydro-Cascade Model and Relativistic Kinetic Equations for Finite Domains
- Strangeness and Statistical Hadronization: How to Study Quark-Gluon Plasma
- Quark coalescence into opposite parity baryon states