Second virial coefficients of light nuclear clusters and their chemical freeze-out in nuclear collisions
arXiv:2005.01555 · doi:10.1140/epja/s10050-020-00296-5
Abstract
Here we develop a new strategy to analyze the chemical freeze-out of light (anti)nuclei produced in high energy collisions of heavy atomic nuclei within an advanced version of the hadron resonance gas model. It is based on two different, but complementary approaches to model the hard-core repulsion between the light nuclei and hadrons. The first approach is based on an approximate treatment of the equivalent hard-core radius of a roomy nuclear cluster and pions, while the second approach is rigorously derived here using a self-consistent treatment of classical excluded volumes of light (anti)nuclei and hadrons. By construction, in a hadronic medium dominated by pions, both approaches should give the same results. Employing this strategy to the analysis of hadronic and light (anti)nuclei multiplicities measured by ALICE at TeV and by STAR at GeV, we got rid of the existing ambiguity in the description of light (anti)nuclei data and determined the chemical freeze-out parameters of nuclei with high accuracy and confidence. At ALICE energy the nuclei are frozen prior to the hadrons at the temperature MeV, while at STAR energy there is a single freeze-out of hadrons and nuclei at the temperature MeV. We argue that the found chemical freeze-out volumes of nuclei can be considered as the volumes of quark-gluon bags that produce the nuclei at the moment of hadronization.
15 pages, 4 figures, 3 tables
References in corpus (9)
- Constraining supernova equations of state with equilibrium constants from heavy-ion collisions
- Cluster virial expansion for nuclear matter within a quasiparticle statistical approach
- Simple Solution to the Strangeness Horn Description Puzzle
- Hadron yields, the chemical freeze-out and the QCD phase diagram
- Light -shell nuclei with cluster structures () in nuclear matter
- Chirally improved quark Pauli blocking in nuclear matter and applications to quark deconfinement in neutron stars
- The influence of Pauli blocking effects on the properties of dense hydrogen
- Equation of state and sound velocity of hadronic gas with hard-core interaction
- Strangeness and light fragment production at high baryon density
Cited by in corpus (8)
- Chirally improved quark Pauli blocking in nuclear matter and applications to quark deconfinement in neutron stars
- Deuteron yields from LHC: Continuum correlations and in-medium effects
- Cluster production and the chemical freeze-out in expanding hot dense matter
- Induced surface and curvature tension equation of state for hadron resonance gas in finite volumes and its relation to morphological thermodynamics
- Thermal production of sexaquarks in heavy-ion collisions
- Production of Light Nuclei in Heavy Ion Collisions via Hagedorn Resonances
- Induced Surface and Curvature Tensions Equation of State of Hadrons with Relativistic Excluded Volumes and its Relation to Morphological Thermodynamics
- Colliding and Fixed Target Mode in a Single Experiment -- A Novel Approach to Study the Matter under New Extreme Conditions