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Author

  • Liu, Fu-Ming (4)
  • Stöcker, Horst (4)
  • Bleicher, Marcus (3)
  • Werner, Klaus (3)
  • Aichelin, Jörg (2)
  • Drescher, Hans-Joachim (1)
  • Greiner, Carsten (1)
  • Koch-Steinheimer, Peter (1)
  • Liu, Fuming (1)
  • Liu, Zuhua (1)
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  • 2004 (2)
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  • English (5)

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  • Antiteilchen (1)
  • Chemical equilibration (1)
  • Chemische Gleichgewichtherstellung (1)
  • Kollision (1)
  • Produktion von pentaquark (1)
  • RHIC (1)
  • antiparticles (1)
  • collision (1)
  • heavy Hagedorn states (1)
  • production of pentaquark (1)
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  • Physik (5)
  • Frankfurt Institute for Advanced Studies (FIAS) (3)

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Production of pentaquark states in pp collisions within the microcanonical ensemble (2004)
Liu, Fu-Ming ; Stöcker, Horst ; Werner, Klaus
The microcanonical statistical approach is applied to study the production of pentaquark states in pp collisions. We predict the average multiplicity and average transverse momentum of Theta+(1540) and Xi(1860) and their antiparticles at different energies.
Chemical equilibration due to heavy Hagedorn states (2004)
Greiner, Carsten ; Koch-Steinheimer, Peter ; Liu, Fu-Ming ; Shovkovy, Igor A. ; Stöcker, Horst
A scenario of heavy resonances, called massive Hagedorn states, is proposed which exhibits a fast (t H 1 fm/c) chemical equilibration of (strange) baryons and anti-baryons at the QCD critical temperature Tc. For relativistic heavy ion collisions this scenario predicts that hadronization is followed by a brief expansion phase during which the equilibration rate is higher than the expansion rate, so that baryons and antibaryons reach chemical equilibrium before chemical freeze-out occurs. PACS-Nr.: 12.38.Mh
A novel mechanism of H⁰ Di-baryon production in proton-proton interactions from parton based Gribov-Regge theory (2002)
Bleicher, Marcus ; Liu, Fu-Ming ; Aichelin, Jörg ; Drescher, Hans-Joachim ; Werner, Klaus ; Ostapchenko, Sergey S. ; Pierog, Tanguy
A novel mechanism of H0 and strangelet production in hadronic interactions within the Gribov-Regge approach is presented. In contrast to traditional distillation approaches, here the production of multiple (strange) quark bags does not require large baryon densities or a QGP. The production cross section increases with center of mass energy. Rapidity and transverse momentum distributions of the H 0 are predicted for pp collisions at E_lab = 160 AGeV (SPS) and \sqrt s = 200 AGeV (RHIC). The predicted total H 0 multiplicities are of order of the Omega-baryon yield and can be accessed by the NA49 and the STAR experiments.
A micro-canonical description of hadron production in proton-proton collisions (2003)
Liu, Fu-Ming ; Werner, Klaus ; Aichelin, Jörg ; Bleicher, Marcus ; Stöcker, Horst
A micro-canonical treatment is used to study particle production in pp collisions. First this micro-canonical treatment is compared to some canonical ones. Then proton, antiproton and pion 4 pi multiplicities from proton-proton collisions at various center of mass energies are used to fix the micro-canonical parameters (E) and (V). The dependences of the micro-canonical parameters on the collision energy are parameterised for the further study of pp reactions with this micro-canonical treatment.
Anisotropic flow at RHIC : how unique is the number-of-constituent-quark scaling? (2006)
Lu, Yang ; Bleicher, Marcus ; Liu, Fuming ; Liu, Zuhua ; Sorensen, Paul ; Stöcker, Horst ; Xu, Nu ; Zhu, Xianglei
The transverse momentum dependence of the anisotropic flow v_2 for pi, K, nucleon, Lambda, Xi and Omega is studied for Au+Au collisions at sqrt s_NN = 200 GeV within two independent string-hadron transport approaches (RQMD and UrQMD). Although both models reach only 60% of the absolute magnitude of the measured v_2, they both predict the particle type dependence of v_2, as observed by the RHIC experiments: v_2 exhibits a hadron-mass hierarchy (HMH) in the low p_T region and a number-of-constituent-quark (NCQ) dependence in the intermediate p_T region. The failure of the hadronic models to reproduce the absolute magnitude of the observed v_2 indicates that transport calculations of heavy ion collisions at RHIC must incorporate interactions among quarks and gluons in the early, hot and dense phase. The presence of an NCQ scaling in the string-hadron model results suggests that the particle-type dependencies observed in heavy-ion collisions at intermediate p_T are related to the hadronic cross sections in vacuum rather than to the hadronization process itself, as suggested by quark recombination models.
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