English

Three-fluid Hydrodynamics-based Event Simulator Extended by UrQMD final State interactions (THESEUS) for FAIR-NICA-SPS-BES/RHIC energies

Nuclear Theory 2018-08-29 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We present a new event generator based on the three-fluid hydrodynamics (3FH) approach, followed by a particlization at the hydrodynamic decoupling surface and a subsequent UrQMD afterburner stage based on the microscopic UrQMD transport model that accounts for hadronic final state interactions. First results for Au+Au collisions are presented. The following topics are addressed: the directed flow, transverse-mass spectra, as well as rapidity distributions of protons, pions and kaons for two model equations of state, one with a first-order phase transition, the other with a crossover transition. Preliminary results on the femtoscopy are also discussed. We analyze the accuracy of reproduction of the 3FH results by the new event generator and the effect of the subsequent UrQMD afterburner stage.

Keywords

Cite

@article{arxiv.1711.07959,
  title  = {Three-fluid Hydrodynamics-based Event Simulator Extended by UrQMD final State interactions (THESEUS) for FAIR-NICA-SPS-BES/RHIC energies},
  author = {P. Batyuk and D. Blaschke and M. Bleicher and Yu. B. Ivanov and Iu. Karpenko and L. Malinina and S. Merts and M. Nahrgang and H. Petersen and O. Rogachevsky},
  journal= {arXiv preprint arXiv:1711.07959},
  year   = {2018}
}

Comments

12 pp., 9 figs. Proceedings of 6th Int. Conf. on New Frontiers in Physics (ICNFP 2017), August 17-26, 2017, Kolymbari, Crete, Greece