What is the meaning of the statistical hadronization model?
arXiv:hep-ph/0410403 · doi:10.1088/1742-6596/5/1/015
Abstract
The statistical model of hadronization succeeds in reproducing particle abundances and transverse momentum spectra in high energy collisions of elementary particles as well as of heavy ions. Despite its apparent success, the interpretation of these results is controversial and the validity of the approach very often questioned. In this paper, we would like to summarize the whole issue by first outlining a basic formulation of the model and then comment on the main criticisms and different kinds of interpretations, with special emphasis on the so-called "phase space dominance". While the ultimate answer to the question why the statistical model works should certainly be pursued, we stress that it is a priority to confirm or disprove the fundamental scheme of the statistical model by performing some detailed tests on the rates of exclusive channels at lower energy.
14 pages, to be published in the Proceedings of the International workshop "Focus on multiplicity", Bari (Italy) June 17-19 2004
Cited by in corpus (23)
- Fluctuations and Correlations of net baryon number, electric charge, and strangeness: A comparison of lattice QCD results with the hadron resonance gas model
- A comparative analysis of statistical hadron production
- The Thermal Production of Strange and Non-Strange Hadrons in e+e- Collisions
- Thermodynamics and fluctuations of conserved charges in Hadron Resonance Gas model in finite volume
- The microcanonical ensemble of the ideal relativistic quantum gas with angular momentum conservation
- S-matrix formulation of thermodynamics with N-body scatterings
- Surprises from the search for quark-gluon plasma? When was quark-gluon plasma seen?
- Statistical hadronization with exclusive channels in e+e- annihilation
- Universality in Hadronic and Nuclear Collisions at High Energy
- The QCD confinement transition: hadron formation
- Quantum black holes and thermalization in relativistic heavy ion collisions
- Multiplicity Distributions in Canonical and Microcanonical Statistical Ensembles
- The microcanonical ensemble of the ideal relativistic quantum gas
- A Monte-Carlo generator for statistical hadronization in high energy e+e- collisions
- Threshold effects in relativistic gases
- Transverse momentum spectra of strange hadrons within extensive and nonextensive statistics
- Proton and pion transverse spectra at RHIC from radial flow and finite size effects
- Finite size effects on pion spectra in relativistic heavy-ion collisions
- Extended Gibbs ensembles with flow
- Quantum Entanglement in Top Quark Pair Production
- Phase-Space Description of Momentum Spectra in Relativistic Heavy-Ion Collisions
- Imprints of clustering in multiplicity fluctuations
- Conserved Charge Susceptibilities in a Chemically Frozen Hadronic Gas