We discuss details of our thermal model applied to extract chemical freeze-out conditions from fluctuations in the net-electric charge and net-proton number measured at RHIC. A parametrization for these conditions as a function of the beam energy is given
Using simple parametrizations of the thermodynamic freeze-out parameters extracted from the data ove...
We review the chemical and kinetic freeze-out conditions in high energy heavy-ion collisions for AGS...
AbstractWe calculate the first four moments of baryon number, electric charge and strangeness fluctu...
We extract chemical freeze-out conditions via a thermal model approach from fluctuation observables ...
AbstractWe calculate ratios of higher-order susceptibilities quantifying fluctuations in the number ...
Recent results for moments of multiplicity distributions of net protons and net-electric charge from...
A competitive, to the commonly used blast-wave, model describing the freeze-out hypersurface is appl...
Predictions of the single-freeze-out model for the particle spectra at RHIC are presented. The model...
The status of the energy dependence of the chemical freeze-out temperature and chemical potential ob...
We determine chemical freeze-out conditions from strangeness observables measured at RHIC beam energ...
The latest results on fluctuations of electric charge and baryon number, simulated on the lattice by...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
We calculate ratios of higher-order susceptibilities quantifying fluctuations in the number of net-p...
We present an analysis of fluctuations of conserved charges, as baryon number B and electric charge ...
We present our results for ratios of higher order fluctuations of electric charge as functions of th...
Using simple parametrizations of the thermodynamic freeze-out parameters extracted from the data ove...
We review the chemical and kinetic freeze-out conditions in high energy heavy-ion collisions for AGS...
AbstractWe calculate the first four moments of baryon number, electric charge and strangeness fluctu...
We extract chemical freeze-out conditions via a thermal model approach from fluctuation observables ...
AbstractWe calculate ratios of higher-order susceptibilities quantifying fluctuations in the number ...
Recent results for moments of multiplicity distributions of net protons and net-electric charge from...
A competitive, to the commonly used blast-wave, model describing the freeze-out hypersurface is appl...
Predictions of the single-freeze-out model for the particle spectra at RHIC are presented. The model...
The status of the energy dependence of the chemical freeze-out temperature and chemical potential ob...
We determine chemical freeze-out conditions from strangeness observables measured at RHIC beam energ...
The latest results on fluctuations of electric charge and baryon number, simulated on the lattice by...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
We calculate ratios of higher-order susceptibilities quantifying fluctuations in the number of net-p...
We present an analysis of fluctuations of conserved charges, as baryon number B and electric charge ...
We present our results for ratios of higher order fluctuations of electric charge as functions of th...
Using simple parametrizations of the thermodynamic freeze-out parameters extracted from the data ove...
We review the chemical and kinetic freeze-out conditions in high energy heavy-ion collisions for AGS...
AbstractWe calculate the first four moments of baryon number, electric charge and strangeness fluctu...