PaperPanorama

Nuclear Theory·nucl-th

Friday·March 29, 2019

10 papers2 primary·8 cross-listed

  1. 01

    Effects of Hadron-Quark Phase Transitions in Hybrid Stars within the NJL Model

    Ignacio Francisco Ranea-Sandoval🇦🇷 · Milva Gabriela Orsaria🇦🇷 · Germán Malfatti🇦🇷 · Daniela Curin🇦🇷 · Mauro Mariani🇦🇷 · Gustavo Aníbal Contrera🇦🇷 · Octavio Miguel Guilera🇦🇷

    We study local and non-local Polyakov Nambu-Jona-Lasinio models and analyze their respective phase transition diagram. We construct hybrid stars using the zero temperature limit of the local and non-local versions of Nambu-Jona-Lasinio model for quark matter and the modern GM1(L) parametrization of the non-linear relativistic mean field model for hadronic matter. We compare our models with data from PSR J1614-2230 and PSR J0343+0432 and also from GW170817 and its electromagnetic counterpart GRB170817A and AT2017gfo. We study observational signatures of the appearance of a mixed phase as a result of modeling a phase transition that mimics the Gibbs formalism and compare the results with the sharp first-order phase transition obtained using the Maxwell construction. We also study in detail the -mode associated with discontinuities in the equation of state, and calculate non-radial oscillation modes using relativistic Cowling approximation.

    nucl-thastro-ph.HESymmetry(2019)·17 citations
  2. 02

    Delta mass shift as a thermometer of kinetic decoupling in Au+Au reactions at 1.23 AGeV

    Tom Reichert🇩🇪 · Paula Hillmann🇩🇪 · Ayut Limphirat🇹🇭 · Christoph Herold🇹🇭 · Marcus Bleicher🇩🇪

    The HADES experiment at GSI will soon provide data on the production and properties of (1232) baryons from Au+Au reactions at 1.23 AGeV. Using the UrQMD model, we predict the yield and spectra of (1232) resonances. In addition we show that one expects to observe a mass shift of the (1232) resonance on the order of 50 MeV in the reconstructable (1232) mass distribution. This mass shift can be understood in terms of late stage (1232) formation with limited kinetic energy. We show how the mass shift can be used to constrain the kinetic decoupling temperature of the system.

    nucl-thnucl-exJ.Phys.G(2019)·20 citations

Affiliations

first authorsco-authorsvia INSPIRE