PaperPanorama

Nuclear Theory·nucl-th

Monday·September 11, 2017

6 papers3 primary·3 cross-listed

  1. 01

    Role of net baryon density on rapidity width of identified particles from the lowest energies available at the CERN Super Proton Synchrotron to those at the BNL Relativistic Heavy Ion Collider and at the CERN Large Hadron Collider

    Nur Hussain🇮🇳 · Buddhadeb Bhattacharjee🇮🇳

    Widths of the rapidity distributions of various identified hadrons generated with the UrQMD-3.4 event generator at all the Super Proton Synchrotron (SPS) energies have been presented and compared with the existing experimental results. An increase in the width of the rapidity distribution of could be seen with both Monte Carlo (MC) and experimental data for the studied energies. Using MC data, the study has been extended to Relativistic Heavy Ion Collider (RHIC) and Large Hadron Collider (LHC) energies. A similar jump, as observed in the plot of rapidity width versus rest mass at Alternating Gradient Synchrotron (AGS) and all SPS energies, persists even at RHIC and LHC energies, confirming its universal nature from AGS to the highest LHC energies. Such observation indicates that pair production may not be the only mechanism of particle production at the highest LHC energies. However, with MC data, the separate mass scaling for mesons and baryons is found to exist even at the top LHC energy.

    nucl-thhep-phPRC(2017)·6 citations
  2. 02

    Strangeness Production and Color Deconfinement

    Paolo Castorina · Salvatore Plumari · Helmut Satz

    The relative multiplicities for hadron production in different high energy collisions are in general well described by an ideal gas of all hadronic resonances, except that under certain conditions, strange particle rates are systematically reduced. We show that the suppression factor gamma_s, accounting for reduced strange particle rates in pp, pA and AA collisions at different collision energies, becomes a universal function when expressed in terms of the initial entropy density s_0 or the initial temperature T of the produced thermal medium. It is found that gamma_s increases from about 0.5 to 1.0 in a narrow temperature range around the quark-hadron transition temperature T_c = 160 MeV. Strangeness suppression thus disappears with the onset of color deconfinement; subsequently, full equilibrium resonance gas behavior is attained.

    nucl-thhep-ph
  3. 03

    Structure of the lightest tin isotopes

    T. D. Morris · J. Simonis · S. R. Stroberg · C. Stumpf · G. Hagen · J. D. Holt · G. R. Jansen · T. Papenbrock · R. Roth · A. Schwenk

    We link the structure of nuclei around Sn, the heaviest doubly magic nucleus with equal neutron and proton numbers (), to nucleon-nucleon () and three-nucleon () forces constrained by data of few-nucleon systems. Our results indicate that Sn is doubly magic, and we predict its quadrupole collectivity. We present precise computations of Sn based on three-particle--two-hole excitations of Sn, and reproduce the small splitting between the lowest and states. Our results are consistent with the sparse available data.

    nucl-thnucl-exPRL(2018)·248 citations

Affiliations

first authorsco-authorsvia INSPIRE