An effcient way to study the QCD phase diagram at small finite density is to extrapolate thermodynamical observables from imaginary chemical potential. In this talk we present results on several observables for the equation of state to order (μB/T)6. The observables are calculated along the isentropic trajectories in the (T, μB) plane corresponding to the RHIC Beam Energy Scan collision energies. The simulations are performed at the physical mass for the light and strange quarks. μs was tuned in a way to enforce strangeness neutrality to match the experimental conditions; the results are continuum extrapolated using lattices of up to Nt = 16 temporal resolution
We calculate a resummed equation of state with lattice QCD simulations at imaginary chemical potenti...
We calculate the QCD cross-over temperature, the equation of state and fluctuations of conserved cha...
A new precision lattice simulation set is analyzed for the equation of state to sixth order. We used...
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...
We want to study thermodynamical observables at finite density. Since direct lattice simulations at ...
We construct a family of equations of state for QCD in the temperature range 30MeV≤T≤800MeV and in t...
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 calculate the equation of state in 2+1 flavor QCD at finite temperature with physical strange qua...
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...
An efficient way to study the QCD phase diagram at small finite density is to extrapolate thermodyna...
Cheng M, Christ NH, Datta S, et al. The QCD equation of state with almost physical quark masses. Phy...
We calculate a resummed equation of state with lattice QCD simulations at imaginary chemical potenti...
We calculate the QCD cross-over temperature, the equation of state and fluctuations of conserved cha...
A new precision lattice simulation set is analyzed for the equation of state to sixth order. We used...
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...
We want to study thermodynamical observables at finite density. Since direct lattice simulations at ...
We construct a family of equations of state for QCD in the temperature range 30MeV≤T≤800MeV and in t...
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 calculate the equation of state in 2+1 flavor QCD at finite temperature with physical strange qua...
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...
An efficient way to study the QCD phase diagram at small finite density is to extrapolate thermodyna...
Cheng M, Christ NH, Datta S, et al. The QCD equation of state with almost physical quark masses. Phy...
We calculate a resummed equation of state with lattice QCD simulations at imaginary chemical potenti...
We calculate the QCD cross-over temperature, the equation of state and fluctuations of conserved cha...
A new precision lattice simulation set is analyzed for the equation of state to sixth order. We used...