We explore the highly non-perturbative hot region of the QCD phase diagram close to Tc by use of an imaginary chemical potential mu which avoids the sign problem. The number density and the quark number susceptibility are consistent with a critical behaviour associated with the transition line in the negative mu^2 half-plane. We compare the analytic continuation of these results with various phenomenological models, none of which provides a satisfactory description of data, a failure on which we make some comments. These results complement and extend the information obtained via the analysis of the susceptibilities evaluated at zero mu, yielding a simple description of the candidate strongly interacting QGP phase. As a byproduct of our anal...
Quarkonia are the central objects to explore the non-perturbative nature of non-abelian gauge theori...
We study the high density region of QCD within an effective model obtained in the frame of the hoppi...
Matter described by quantum chromodynamics (QCD), the theory of strong interactions, may undergo pha...
We explore the highly nonperturbative hot region of the QCD phase diagram close to Tc by use of an i...
We study the highly non-perturbative hot region of the QCD phase diagram close to T_c by use of an i...
We discuss the imaginary chemical potential approach to the study of QCD at nonzero temperature and ...
International audienceThe QCD transition from a hadronic to a quark-gluon plasma phase is a cross-ov...
We present the crossover line between the quark gluon plasma and the hadron gas phases for small rea...
Hart A, Laine M, Philipsen O. Testing imaginary vs. real chemical potential in finite-temperature QC...
Our current knowledge of the quark-gluon plasma in thermodynamical equilibrium is reviewed. The phas...
We determine the pseudo-critical couplings at imaginary chemical potentials by high-statistics Mont...
We summarize our recent results on the phase diagram of QCD with N f = 2 + 1 quark flavors, as a fun...
The critical sector of strong interactions at high temperatures is explored in the frame of two comp...
At very initial stage of relativistic heavy ion collisions a wave of quark-gluon matter is produced ...
We determine the phase diagram of QCD on the mu - T plane for small to moderate chemical potentials....
Quarkonia are the central objects to explore the non-perturbative nature of non-abelian gauge theori...
We study the high density region of QCD within an effective model obtained in the frame of the hoppi...
Matter described by quantum chromodynamics (QCD), the theory of strong interactions, may undergo pha...
We explore the highly nonperturbative hot region of the QCD phase diagram close to Tc by use of an i...
We study the highly non-perturbative hot region of the QCD phase diagram close to T_c by use of an i...
We discuss the imaginary chemical potential approach to the study of QCD at nonzero temperature and ...
International audienceThe QCD transition from a hadronic to a quark-gluon plasma phase is a cross-ov...
We present the crossover line between the quark gluon plasma and the hadron gas phases for small rea...
Hart A, Laine M, Philipsen O. Testing imaginary vs. real chemical potential in finite-temperature QC...
Our current knowledge of the quark-gluon plasma in thermodynamical equilibrium is reviewed. The phas...
We determine the pseudo-critical couplings at imaginary chemical potentials by high-statistics Mont...
We summarize our recent results on the phase diagram of QCD with N f = 2 + 1 quark flavors, as a fun...
The critical sector of strong interactions at high temperatures is explored in the frame of two comp...
At very initial stage of relativistic heavy ion collisions a wave of quark-gluon matter is produced ...
We determine the phase diagram of QCD on the mu - T plane for small to moderate chemical potentials....
Quarkonia are the central objects to explore the non-perturbative nature of non-abelian gauge theori...
We study the high density region of QCD within an effective model obtained in the frame of the hoppi...
Matter described by quantum chromodynamics (QCD), the theory of strong interactions, may undergo pha...