AbstractWe calculate ratios of higher-order susceptibilities quantifying fluctuations in the number of net-protons and in the net-electric charge using the Hadron Resonance Gas (HRG) model. We take into account the effect of resonance decays, the kinematic acceptance cuts in rapidity, pseudo-rapidity and transverse momentum used in the experimental analysis, as well as a randomization of the isospin of nucleons in the hadronic phase. By comparing these results to the latest experimental data from the STAR Collaboration, we determine the freeze-out conditions from net-electric charge and net-proton distributions and discuss their consistency
Braun-Munzinger P, Friman B, Karsch F, Redlich K, Skokov V. Net charge probability distributions in ...
We present a subset of experimental results on charge fluctuation from the heavy-ion collisions to s...
The transverse energy and the charged-particle multiplicity at midrapidity are evaluated in a single...
We calculate ratios of higher-order susceptibilities quantifying fluctuations in the number of net-p...
AbstractWe calculate ratios of higher-order susceptibilities quantifying fluctuations in the number ...
We present an analysis of fluctuations of conserved charges, as baryon number B and electric charge ...
We calculate the first four moments of baryon number, electric charge and strangeness fluctuations w...
AbstractWe calculate the first four moments of baryon number, electric charge and strangeness fluctu...
We investigate net proton fluctuations as important observables measured in heavy-ion collisions wit...
We determine chemical freeze-out conditions from strangeness observables measured at RHIC beam energ...
We extract chemical freeze-out conditions via a thermal model approach from fluctuation observables ...
The measurement of conserved charge distributions has generated considerable interest in understandi...
Recent results for moments of multiplicity distributions of net-protons and net-electric charge from...
We discuss details of our thermal model applied to extract chemical freeze-out conditions from fluct...
The dynamical net-charge fluctuations (νdyn) in different particle ratios K/π, K/p, and p/π are calc...
Braun-Munzinger P, Friman B, Karsch F, Redlich K, Skokov V. Net charge probability distributions in ...
We present a subset of experimental results on charge fluctuation from the heavy-ion collisions to s...
The transverse energy and the charged-particle multiplicity at midrapidity are evaluated in a single...
We calculate ratios of higher-order susceptibilities quantifying fluctuations in the number of net-p...
AbstractWe calculate ratios of higher-order susceptibilities quantifying fluctuations in the number ...
We present an analysis of fluctuations of conserved charges, as baryon number B and electric charge ...
We calculate the first four moments of baryon number, electric charge and strangeness fluctuations w...
AbstractWe calculate the first four moments of baryon number, electric charge and strangeness fluctu...
We investigate net proton fluctuations as important observables measured in heavy-ion collisions wit...
We determine chemical freeze-out conditions from strangeness observables measured at RHIC beam energ...
We extract chemical freeze-out conditions via a thermal model approach from fluctuation observables ...
The measurement of conserved charge distributions has generated considerable interest in understandi...
Recent results for moments of multiplicity distributions of net-protons and net-electric charge from...
We discuss details of our thermal model applied to extract chemical freeze-out conditions from fluct...
The dynamical net-charge fluctuations (νdyn) in different particle ratios K/π, K/p, and p/π are calc...
Braun-Munzinger P, Friman B, Karsch F, Redlich K, Skokov V. Net charge probability distributions in ...
We present a subset of experimental results on charge fluctuation from the heavy-ion collisions to s...
The transverse energy and the charged-particle multiplicity at midrapidity are evaluated in a single...