PaperPanorama

arXiv:2109.09843·v2·Nuclear Experiment

System Size and Flavour Dependence of Chemical Freeze-out Temperatures in ALICE Data from pp, pPb and PbPb Collisions at LHC Energies

Fernando Antonio Flor🇺🇸 · Gabrielle Olinger🇺🇸 · René Bellwied🇺🇸

Abstract

We present the system size and flavour dependence of the chemical freeze-out temperature () at vanishing baryo-chemical potential calculated via thermal fits to experimental yields for several multiplicity classes in pp, pPb and PbPb collisions measured by ALICE. Using the Thermal-FIST Hadron Resonance Gas model package, we compare the quality of fits across various treatments of strangeness conservation under different freeze-out conditions as a function of the charged particle multiplicity density . Additionally, we examine how the anti-hadron to pion yield ratios of light and strange baryons, as well as the meson, evolve within a flavour-dependent model. Through a unique two-temperature chemical freeze-out approach, we show that flavour dependence of in a Strangeness Canonical Ensemble leads to a natural explanation of strangeness enhancement from small to large systems at LHC energies without requiring any non-equilibrium particle production at small .

Comments: 7 pages, 5 figures, 2 tables. Submitted to and accepted by Physics Letters B

Citation historyopen in Citation History ↗