Particles (Mar 2023)

Light-Nuclei Production in Heavy-Ion Collisions at <inline-formula><math display="inline"><semantics><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt></mrow></semantics></math></inline-formula> = 6.4 – 19.6 GeV in THESEUS Generator Based on Three-Fluid Dynamics

  • Marina Kozhevnikova,
  • Yuri B. Ivanov

DOI
https://doi.org/10.3390/particles6010024
Journal volume & issue
Vol. 6, no. 1
pp. 440 – 450

Abstract

Read online

Light-nuclei production in relativistic heavy-ion collisions is simulated within an updated Three-fluid Hydrodynamics-based Event Simulator Extended by UrQMD (Ultra-relativistic Quantum Molecular Dynamics) final State interactions (THESEUS). The simulations are performed in the collision energy range of sNN= 6.4–19.6 GeV. The light-nuclei are produced within the thermodynamical approach on an equal basis with hadrons. Since the light nuclei do not participate in the UrQMD evolution, the only additional parameter related to the light nuclei, i.e., the energy density of late freeze-out, is used for the imitation of the afterburner stage of the collision. The updated THESEUS provides a reasonable reproduction of data on bulk observables of the light nuclei, especially their functional dependence on the collision energy and light-nucleus mass. Various ratios, d/p, t/p, t/d, and N(t)×N(p)/N2(d), are also considered. Imperfect reproduction of the light-nuclei data leaves room for medium effects in produced light nuclei.

Keywords