The centrality dependence of strange (𝐾0𝑆, Λ+‾‾‾Λ) and multistrange (Ξ−+‾‾‾Ξ+, Ω−+‾‾‾Ω+) hadron production is measured by ALICE in the Large Hadron Collider (LHC) lead-lead (Pb-Pb) collisions at a center-of-mass energy per nucleon pair √𝑠𝑁⁢𝑁=5.02TeV, using the full dataset collected during the LHC Run 2 campaign in the years 2015 and 2018. This is the largest heavy-ion dataset analyzed to date at the LHC, and it allows for the extraction of transverse momentum (𝑝𝑇) spectra and 𝑝𝑇-integrated yields with unprecedented precision, over a broad range of charged particle multiplicity densities (⟨d⁢𝑁ch/d⁢𝜂⟩|𝜂|<0.5), probing regions where smaller collision system (pp and 𝑝-Pb) results are also available. The 𝑝𝑇 spectra evolve with centrality, featuring higher ⟨𝑝𝑇⟩ in central events for all particles. The Λ/𝐾0𝑆 ratio exhibits the distinctive baryon-to-meson enhancement in the intermediate 𝑝𝑇 region, with a maximum which is shifted to larger 𝑝𝑇 for more central collisions. The hadron-to-pion yield ratios are presented as a function of ⟨d⁢𝑁ch/d⁢𝜂⟩|𝜂|<0.5 and compared to results from different collision systems and energies. A smooth connection from pp to Pb-Pb is observed, thus demonstrating that collision system or energy do not play a role in the multiplicity evolution of this observable. The previously reported enhancement of strangeness production in the multiplicity range probed in pp and 𝑝-Pb collisions saturates in the multiplicity range of Pb-Pb data. These results constitute a key test bench for theoretical models and a first comparison to the EPOS 4 generator is presented.

Centrality dependence of strange particle production in Pb-Pb collisions at s N N = 5.02 TeV

Cortese, P.;Jacazio, N.;Ramello, L.;Sitta, M.;
2026-01-01

Abstract

The centrality dependence of strange (𝐾0𝑆, Λ+‾‾‾Λ) and multistrange (Ξ−+‾‾‾Ξ+, Ω−+‾‾‾Ω+) hadron production is measured by ALICE in the Large Hadron Collider (LHC) lead-lead (Pb-Pb) collisions at a center-of-mass energy per nucleon pair √𝑠𝑁⁢𝑁=5.02TeV, using the full dataset collected during the LHC Run 2 campaign in the years 2015 and 2018. This is the largest heavy-ion dataset analyzed to date at the LHC, and it allows for the extraction of transverse momentum (𝑝𝑇) spectra and 𝑝𝑇-integrated yields with unprecedented precision, over a broad range of charged particle multiplicity densities (⟨d⁢𝑁ch/d⁢𝜂⟩|𝜂|<0.5), probing regions where smaller collision system (pp and 𝑝-Pb) results are also available. The 𝑝𝑇 spectra evolve with centrality, featuring higher ⟨𝑝𝑇⟩ in central events for all particles. The Λ/𝐾0𝑆 ratio exhibits the distinctive baryon-to-meson enhancement in the intermediate 𝑝𝑇 region, with a maximum which is shifted to larger 𝑝𝑇 for more central collisions. The hadron-to-pion yield ratios are presented as a function of ⟨d⁢𝑁ch/d⁢𝜂⟩|𝜂|<0.5 and compared to results from different collision systems and energies. A smooth connection from pp to Pb-Pb is observed, thus demonstrating that collision system or energy do not play a role in the multiplicity evolution of this observable. The previously reported enhancement of strangeness production in the multiplicity range probed in pp and 𝑝-Pb collisions saturates in the multiplicity range of Pb-Pb data. These results constitute a key test bench for theoretical models and a first comparison to the EPOS 4 generator is presented.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11579/238210
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