We provide a method to test if hadrons produced in high energy heavy ion collisions were emitted at freeze-out from an equilibrium hadron gas. Our considerations are based on an ideal gas at fixed temperature $T_f$, baryon number density $n_B$, and vanishing total strangeness. The constituents of this gas are all hadron resonances up to a mass of 2 GeV; they are taken to decay according to the experimentally observed branching ratios. The ratios of the various resulting hadron production rates are tabulated as functions of $T_f$ and $n_B$. These tables can be used for the equilibration analysis of any heavy ion data; we illustrate this for some specific cases
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
Heavy ion collisions are an ideal tool to explore the QCD phase diagram. The goal is to study the eq...
We investigate the equilibration and the equation of state of a hot hadron gas at finite baryon dens...
We study particle production and its density evolution and equilibration in hot dense medium, such a...
The current status of various thermal and statistical descriptions of particle production in the ult...
Particle production in central S-A collisions at 200 GeV/A energy is analysed within a thermal model...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
We study the identified particle ratios produced at mid-rapidity (y<0.5) in heavy-ion collisions, al...
Cleymans J, Elliott D, Satz H, Thews RL. Thermal hadron production in Si-Au collisions. ZEITSCHRIFT ...
The physical processes behind the production of light nuclei in heavy ion collisions are unclear. Th...
This dissertation examines the phenomenology of statistical hadronization at ultrarelativistic energ...
We present an analysis of particle production yields measured in central Au-Au collisions at RHIC in...
We investigate the chemical freeze-out in heavy-ion collisions (HICs) and the impact of the hadronic...
It is shown that hadron abundances in high energy e+e-, pp and p{\bar p} collisions, calculated by a...
We present a detailed study of chemical freeze-out in nucleus-nucleus collisions at beam energies of...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
Heavy ion collisions are an ideal tool to explore the QCD phase diagram. The goal is to study the eq...
We investigate the equilibration and the equation of state of a hot hadron gas at finite baryon dens...
We study particle production and its density evolution and equilibration in hot dense medium, such a...
The current status of various thermal and statistical descriptions of particle production in the ult...
Particle production in central S-A collisions at 200 GeV/A energy is analysed within a thermal model...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
We study the identified particle ratios produced at mid-rapidity (y<0.5) in heavy-ion collisions, al...
Cleymans J, Elliott D, Satz H, Thews RL. Thermal hadron production in Si-Au collisions. ZEITSCHRIFT ...
The physical processes behind the production of light nuclei in heavy ion collisions are unclear. Th...
This dissertation examines the phenomenology of statistical hadronization at ultrarelativistic energ...
We present an analysis of particle production yields measured in central Au-Au collisions at RHIC in...
We investigate the chemical freeze-out in heavy-ion collisions (HICs) and the impact of the hadronic...
It is shown that hadron abundances in high energy e+e-, pp and p{\bar p} collisions, calculated by a...
We present a detailed study of chemical freeze-out in nucleus-nucleus collisions at beam energies of...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
Heavy ion collisions are an ideal tool to explore the QCD phase diagram. The goal is to study the eq...
We investigate the equilibration and the equation of state of a hot hadron gas at finite baryon dens...