The freeze-out curve in the QCD phase diagram embodies a substantial amount of precise experimental data in heavy ion collisions. We present our lattice QCD results along the freeze-out curve. The variance, skew and kurtosis of the event distribution of baryon number are studied at several energies of interest through Pade resummations. A smooth behaviour is predicted for three ratios of these quantities at current RHIC and future LHC energies. Any deviations from these at the RHIC energy scan would signal the presence of a nearby critical point. Our lattice results on the critical point do show such a behaviour
Abstract: In the last years there has been remarkable progress in the comparison of experimental dat...
QCD critical point is a landmark region in the QCD phase diagram outlined by temperature as a functi...
Recent results on baryon production in relativistic heavy ion collisions show that a revision of the...
The freeze-out curve, which describes a vast amount of precise experimental data in heavy ion collis...
International audienceEvent-by-event fluctuations of the net-proton number studied in heavy-ion coll...
We calculate the first four moments of baryon number, electric charge and strangeness fluctuations w...
We describe a procedure for determination of freeze-out parameters of heavy-ion collisions through d...
Wagner M. Charge Fluctuations as Thermometer for Heavy-Ion Collisions. In: PoS LATTICE2013. 2014: 1...
Fluctuations of conserved quantities are predicted to be sensitive observables to probe the QCD phas...
AbstractWe calculate the first four moments of baryon number, electric charge and strangeness fluctu...
We discuss the usefulness of various lattice observables especially fluctuations to locate the QCD c...
The main goal of high-energy heavy-ion collisions has been to understand Quantum Chromo Dynamics (QC...
Recent results for moments of multiplicity distributions of net-protons and net-electric charge from...
Bazavov A, Ding H, Hegde P, et al. Freeze-Out Conditions in Heavy Ion Collisions from QCD Thermodyna...
The search for a possible critical point in the QCD phase diagram is ongoing in heavy-ion collision ...
Abstract: In the last years there has been remarkable progress in the comparison of experimental dat...
QCD critical point is a landmark region in the QCD phase diagram outlined by temperature as a functi...
Recent results on baryon production in relativistic heavy ion collisions show that a revision of the...
The freeze-out curve, which describes a vast amount of precise experimental data in heavy ion collis...
International audienceEvent-by-event fluctuations of the net-proton number studied in heavy-ion coll...
We calculate the first four moments of baryon number, electric charge and strangeness fluctuations w...
We describe a procedure for determination of freeze-out parameters of heavy-ion collisions through d...
Wagner M. Charge Fluctuations as Thermometer for Heavy-Ion Collisions. In: PoS LATTICE2013. 2014: 1...
Fluctuations of conserved quantities are predicted to be sensitive observables to probe the QCD phas...
AbstractWe calculate the first four moments of baryon number, electric charge and strangeness fluctu...
We discuss the usefulness of various lattice observables especially fluctuations to locate the QCD c...
The main goal of high-energy heavy-ion collisions has been to understand Quantum Chromo Dynamics (QC...
Recent results for moments of multiplicity distributions of net-protons and net-electric charge from...
Bazavov A, Ding H, Hegde P, et al. Freeze-Out Conditions in Heavy Ion Collisions from QCD Thermodyna...
The search for a possible critical point in the QCD phase diagram is ongoing in heavy-ion collision ...
Abstract: In the last years there has been remarkable progress in the comparison of experimental dat...
QCD critical point is a landmark region in the QCD phase diagram outlined by temperature as a functi...
Recent results on baryon production in relativistic heavy ion collisions show that a revision of the...