9 papers
Relativistic Mean Field Approach with Chiral Symmetry Breaking and Quark Confinement in the light of Astrophysical Observations
Bikram Keshari Pradhan, Mohamad Chamseddine, Jérôme Margueron +4
We perform a Bayesian analysis of a relativistic mean-field approach, which is an implementation of the chiral confining model with both chiral symmetry breaking and confinement ef…
Nuclear structure within the relativistic mean field approach including chiral symmetry and quark confinement effects
M. Chamseddine, J. -P. Ebran, E. Khan +4
The relativistic mean field approach, within a theoretical framework known as the chiral confining model incorporating chiral symmetry breaking and quark confinement effects, is ap…
HFB3: an axial HFB solver with Gogny forces using a 2-center HO basis (C++/Python)
N. Dubray, J. P. Ebran, P. Carpentier +7
The HFB3 program solves the axial nuclear Hartree-Fock-Bogoliubov (HFB) equations using bases formed by either one or two sets of deformed Harmonic Oscillator (HO) solutions with D…
Nuclear Physics Confronts Relativistic Collisions Of Isobars
Giuliano Giacalone, Jiangyong Jia, Vittorio Somà +43
High-energy collisions involving the isobars Zr and Ru have been performed in 2018 at Brookhaven National Laboratory's Relativistic Heavy Ion Collider (RHIC) a…
The -particle condensation in diluted at finite temperature
M. Davies, E. Yüksel, J. -P. Ebran +2
We investigate the effect of temperature on -particle clustering in the diluted nucleus using the multi-constrained finite-temperature relativistic Hartree-Bogo…
Anisotropic flow in fixed-target Pb+Ne collisions as a probe of quark-gluon plasma
Giuliano Giacalone, Wenbin Zhao, Benjamin Bally +19
The System for Measuring Overlap with Gas (SMOG2) at the LHCb detector enables the study of fixed-target ion-ion collisions at relativistic energies ( GeV…