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Particle production in HRG with thermodynamically consistent EoS and partially deformable hadrons

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arxiv 2406.11752 v3 pith:DPU4TPTN submitted 2024-06-17 hep-ph hep-th

classification hep-phhep-th
keywords hadronichadronshard-coremodelurhicantibaryonsapproachbaryons
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In the present work, we analyze several strange as well as non-strange relative hadronic yields obtained in the ultra-relativistic heavy-ion collisions (URHIC) experiments over a wide range of center-of-mass collision energy ($\sqrt{s_{NN}}$). We invoke the formation of a hot and dense hadronic resonance gas (HRG) in the final stage following the URHIC. We use an earlier proposed thermodynamically consistent approach for obtaining the equation of state (EoS) of a HRG. It takes into account an important aspect of the hadronic interaction, viz., the hadronic hard-core repulsion, by assigning hard-core volumes to the hadrons, leading to an excluded volume (EV) type effect. We have invoked the bag model approach to assign hard-core volumes to baryons (antibaryons) while treating mesons to be point particles. We employ ansatz to obtain the dependence of the temperature (\textit{T}) and baryon chemical potential (BCP) of HRG system on the center-of-mass energy in URHIC. We also find strong evidence of a double freeze-out scenario, corresponding to baryons (antibaryons) and mesons, respectively. Strangeness (anti-strangeness) imbalance factor is also seen to play an important role in explaining the ratio of strange hadrons to the non-strange ones. The HRG model can explain the experimental data on various relative hadronic multiplicities quite satisfactorily over a wide range of $\sqrt{s_{NN}}$, ranging from the lowest RHIC energies to the highest LHC energies using one set of model parameters by obtaining the best theoretical fits to the experimental data using the minimum $\chi^{2}$/dof method.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Relative Hadron Yields in HRG With Medium Modification

    hep-ph 2024-11 conditional novelty 4.0 of 10

    A hadron resonance gas with NJL-based temperature- and density-dependent baryon masses and excluded-volume repulsion fits antiproton/proton and related ratios, yielding a chemical freeze-out temperature of about 145 M...

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