PaperPanorama

Nuclear Theory·nucl-th

Thursday·June 2, 2022

4 papers2 primary·2 cross-listed

  1. 01

    Spin symmetry energy and equation of state of spin-polarized neutron star matter

    Nguyen Hoang Dang Khoa · Ngo Hai Tan · Dao T. Khoa

    Equation of states (EOS) of the spin-polarized nuclear matter (NM) is studied within the Hartree-Fock (HF) formalism using the realistic density dependent nucleon-nucleon interaction. With a nonzero fraction of spin-polarized baryons in NM, the spin- and spin-isospin dependent parts of the HF energy density give rise to the \emph{spin symmetry} energy that behaves in about the same manner as the \emph{isospin symmetry} energy, widely discussed in literature as the nuclear symmetry energy. The present HF study shows a strong correlation between the spin symmetry energy and nuclear symmetry energy over the whole range of baryon densities. The important contribution of the spin symmetry energy to the EOS of the spin-polarized NM is found to be comparable with that of the nuclear symmetry energy to the EOS of the isospin-polarized or asymmetric (neutron-rich) NM. Based on the HF energy density, the EOS of the spin-polarized (-stable) np matter is obtained for the determination of the macroscopic properties of neutron star (NS). A realistic density dependence of the spin-polarized fraction have been suggested to explore the impact of the spin symmetry energy to the gravitational mass and radius , as well as the tidal deformability of NS. Given the empirical constrains inferred from a coherent Bayesian analysis of gravitational wave signals of the NS merger GW170817 and the observed masses of the heaviest pulsars, the strong impacts of the spin symmetry energy , nuclear symmetry energy , and nuclear incompressibility to the EOS of nucleonic matter in magnetar were revealed.

    nucl-thastro-ph.HEastro-ph.SRnucl-exPRC(2022)·4 citations
  2. 02

    Kinetic mass shifts of (770) and (892) in Au+Au reaction at GeV

    Tom Reichert🇩🇪 · Marcus Bleicher🇩🇪

    We explore the properties of the last generation of (770) and (892) resonances created in Au+Au reactions at E~AGeV via the reconstruction in the hadronic channel using the UrQMD model. Such resonance studies allow to obtain detailed information on the emission source in such reactions in a complementary way to di-lepton or HBT studies. We observe a freeze-out hierarchy and predict mass shifts for the (770) resonance ( MeV) and the (892) resonance ( MeV). These mass shifts are related to the regeneration cycles of each resonance species and are of purely kinetic origin. Experimentally our predictions can be tested using the GSI-HADES experiment or the lowest RHIC-BES energy.

    nucl-thnucl-exNPA(2022)·11 citations
  3. 03

    Defining the Underlying-Event Activity in the Presence of Heavy-Flavour Processes in Proton-Proton Collisions at LHC Energies

    László Gyulai🇭🇺 · Szende Sándor🇭🇺 · Róbert Vértesi🇭🇺

    We present a systematic analysis of heavy-flavour production in the underlying event in connection to a leading hard process in pp collisions at = 13 TeV, using the PYTHIA 8 Monte Carlo event generator. We compare results from events selected by triggering on the leading hadron, as well as those triggered with reconstructed jets. We show that the kinematics of heavy-flavour fragmentation complicates the characterisation of the underlying event, and the usual method which uses the leading charged final-state hadron as a trigger may wash away the connection between the leading process and the heavy-flavour particle created in association with that. Events triggered with light or heavy-flavour jets, however, retain this connection and bring more direct information on the underlying heavy-flavour production process, but may also import unwanted sensitivity to gluon radiation. The methods outlined in the current work provide means to verify model calculations for light and heavy-flavour production in the jet and the underlying event in great details.

    hep-phnucl-thParticles(2022)·1 citation
  4. 04

    Novel features of attractors and transseries in non-conformal Bjorken flows

    Syo Kamata🇵🇱 · Jakub Jankowski🇵🇱 · Mauricio Martinez🇺🇸

    In this work we investigate the impact of conformal symmetry breaking on hydrodynamization of a far-from-equilibrium fluid. We find a new kind of transseries solutions for the non-conformal hydrodynamic equations of a longitudinal boost invariant expanding plasma. The new transseries solutions unveil a rich physical structure which arises due to the interplay of different physical scales. In the perfect fluid case the non-conformal speed of sound slows down the cooling of the temperature due to the emergence of logarithmic corrections that depends on the mass of the particle. These terms propagate into the perturbative and non-perturbative sectors of the transseries once viscous corrections are included. The logarithmic mass contributions increase the asymptotic value of the Knudsen number while decreasing the damping rate of the transient non-hydrodynamic modes and thus, yielding to an extremely slow hydrodynamization process where flow lines merge to their forward attractor at extremely late times. The early time free streaming expansion is modified and receives logarithmic mass corrections induced by the shear-bulk couplings. The global flow structure and numerical analyses carried out in our work demonstrate the existence of the early and late-time attractors for the shear viscous tensor and bulk viscous pressure.

    physics.flu-dyncond-mat.stat-mechhep-phhep-th+1PRD(2023)·16 citations

Affiliations

first authorsco-authorsvia INSPIRE