Using simple parametrizations of the thermodynamic freeze-out parameters extracted from the data over a wide beam-energy range, we reexpress the hadronic freeze-out line in terms of the underlying dynamical quantities, the net baryon density rhoB and the energy density epsilon, which are subject to local conservation laws. This analysis makes it apparent that rhoB exhibits a maximum as the collision energy is decreased. This maximum freeze-out density has muB=400-500 MeV, which is above the critical value, and it is reached for a fixed-target bombarding energy of 20-30 GeV/A
We introduce a novel approach based on elastic and inelastic scattering rates to extract the hyper-s...
We present a detailed study of chemical freeze-out in p-p, C-C, Si-Si and Pb-Pb collisions at beam m...
We propose that it is the entropy density, which characterizes the chemical freeze-out of hadrons in...
Recent results for moments of multiplicity distributions of net protons and net-electric charge from...
AbstractWe present realistic equations of state for QCD matter at vanishing net-baryon density which...
A competitive, to the commonly used blast-wave, model describing the freeze-out hypersurface is appl...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
AbstractThe recently discovered sharp peak in the K+/π+ ratio in relativistic heavy-ion collisions i...
The recently discovered sharp peak in the K+/π+ ratio in relativistic heavy-ion collisions is discus...
The recently discovered sharp peak in the excitation function of the K+/pi+ ratio around 30 A GeV in...
It is shown that the condition for chemical freeze-out, average energy per hadron approximately 1 Ge...
We present realistic equations of state for QCD matter at vanishing net-baryon density which embed r...
The consequences of hadro-chemical freezeout for the subsequent hadron gas evolution in central heav...
It is demonstrated that there exists a direct correlation between chemical freeze-out point and the ...
The evolution of a hadronic system after its chemical decomposition is described through a model tha...
We introduce a novel approach based on elastic and inelastic scattering rates to extract the hyper-s...
We present a detailed study of chemical freeze-out in p-p, C-C, Si-Si and Pb-Pb collisions at beam m...
We propose that it is the entropy density, which characterizes the chemical freeze-out of hadrons in...
Recent results for moments of multiplicity distributions of net protons and net-electric charge from...
AbstractWe present realistic equations of state for QCD matter at vanishing net-baryon density which...
A competitive, to the commonly used blast-wave, model describing the freeze-out hypersurface is appl...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
AbstractThe recently discovered sharp peak in the K+/π+ ratio in relativistic heavy-ion collisions i...
The recently discovered sharp peak in the K+/π+ ratio in relativistic heavy-ion collisions is discus...
The recently discovered sharp peak in the excitation function of the K+/pi+ ratio around 30 A GeV in...
It is shown that the condition for chemical freeze-out, average energy per hadron approximately 1 Ge...
We present realistic equations of state for QCD matter at vanishing net-baryon density which embed r...
The consequences of hadro-chemical freezeout for the subsequent hadron gas evolution in central heav...
It is demonstrated that there exists a direct correlation between chemical freeze-out point and the ...
The evolution of a hadronic system after its chemical decomposition is described through a model tha...
We introduce a novel approach based on elastic and inelastic scattering rates to extract the hyper-s...
We present a detailed study of chemical freeze-out in p-p, C-C, Si-Si and Pb-Pb collisions at beam m...
We propose that it is the entropy density, which characterizes the chemical freeze-out of hadrons in...