Evidence for differential kinetic freeze-out of the ϕ(1020) meson in Pb-Pb collisions at s NN = 2.76 TeV
Neeraj, Amal Sarkar
Abstract
In heavy-ion collisions, hadronic species with small interaction cross sections may decouple from the evolving fireball earlier than the bulk, yet quantitative evidence for this differential freeze-out has remained elusive. We report that the ϕ(1020) meson does not kinetically freeze out with the bulk hadrons in 0--5\% central Pb-Pb collisions at s NN = 2.76 TeV: a Boltzmann-Gibbs blast-wave contour analysis of ALICE ϕ(1020) p T transverse-momentum spectra shows that the bulk π/K/p freeze-out point is excluded at 4.1σ (Δχ2 = 21.7). Despite its proton-like mass, the ϕ exhibits freeze-out parameters incompatible with those of the bulk hadrons, implying that the observed spectral hardening cannot be attributed solely to mass-dependent collective expansion. Instead, it is naturally explained by the OZI-suppressed ϕ-hadron interaction cross section which causes ϕ to decouple earlier and probe a distinct freeze-out surface. The exclusion is robust under all systematic variations tested and is qualitatively reproduced by SMASH hadronic transport simulations. These findings establish the ϕ meson as a clean probe of species-dependent hadronization, and provide quantitative evidence for a kinetic freeze-out hierarchy in ultra-relativistic heavy-ion collisions.
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