International audienceWe construct a family of equations of state for QCD in the temperature range 30MeV≤T≤800MeV and in the chemical potential range 0≤μB≤450MeV. These equations of state match available lattice QCD results up to O(μB4) and in each of them we place a critical point in the three-dimensional (3D) Ising model universality class. The position of this critical point can be chosen in the range of chemical potentials covered by the second Beam Energy Scan at the Relativistic Heavy Ion Collider. We discuss possible choices for the free parameters, which arise from mapping the Ising model onto QCD. Our results for the pressure, entropy density, baryon density, energy density, and speed of sound can be used as inputs in the hydrodyna...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
International audienceWe construct a family of equations of state for QCD in the temperature range 3...
International audienceWe construct a family of equations of state for QCD in the temperature range 3...
International audienceWe construct a family of equations of state for QCD in the temperature range 3...
We construct a family of equations of state for QCD in the temperature range 30MeV≤T≤800MeV and in t...
The study of the Quantum Chromodynamics (QCD) phase diagram has been the object of great effort in t...
AbstractWe present realistic equations of state for QCD matter at vanishing net-baryon density which...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
Under extreme temperature and density conditions, the quarks and gluons that are normally confined t...
We construct a realistic equation of state for QCD matter at vanishing net-baryon density, which is ...
A prominent goal within the field of modern heavy-ion collisions is to uncover the phase diagram of ...
A prominent goal within the field of modern heavy-ion collisions is to uncover the phase diagram of ...
Whether Quantum Chromodynamics (QCD) exhibits a phase transition at finite temperature and density i...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
International audienceWe construct a family of equations of state for QCD in the temperature range 3...
International audienceWe construct a family of equations of state for QCD in the temperature range 3...
International audienceWe construct a family of equations of state for QCD in the temperature range 3...
We construct a family of equations of state for QCD in the temperature range 30MeV≤T≤800MeV and in t...
The study of the Quantum Chromodynamics (QCD) phase diagram has been the object of great effort in t...
AbstractWe present realistic equations of state for QCD matter at vanishing net-baryon density which...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
Under extreme temperature and density conditions, the quarks and gluons that are normally confined t...
We construct a realistic equation of state for QCD matter at vanishing net-baryon density, which is ...
A prominent goal within the field of modern heavy-ion collisions is to uncover the phase diagram of ...
A prominent goal within the field of modern heavy-ion collisions is to uncover the phase diagram of ...
Whether Quantum Chromodynamics (QCD) exhibits a phase transition at finite temperature and density i...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...
An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynam...