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Resonance production in PbPb collisions at 5.02 TeV via hydrodynamics and hadronic afterburner
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abstract
Using a relativistic hydrodynamics + hadronic afterburner simulation we explore resonance production in PbPb collisions at 5.02 TeV, and demonstrate that many resonance yields, mean transverse momenta, and flows are very sensitive to the late stage hadronic rescattering. Out of all measured resonances $\Lambda(1520)$ is affected strongest by the hadronic rescattering stage, which allows to estimate its duration, and even constrain branching ratios of $\Sigma^* \to \Lambda(1520)\pi$ decays. Strong suppression of $\Lambda(1520)$, which in vacuum has a lifetime of 12.6 fm/$c$, is explained by its small lifetime in a hadronic medium, between 1 and 2 fm/$c$ at temperatures between 100 and 150 MeV. We find that some resonances like $\Delta(1232)$, $f_0(980)$, $a_0(980)$, $\Lambda(1405)$ are enhanced rather than suppressed by the afterburner.
Forward citations
Cited by 2 Pith papers
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Determining the Duration of the Hadronic Stage at RHIC-BES Energies via Resonance Suppression Using a Full Set of Rate Equations
Regeneration keeps K*/K falling linearly with time, giving hadronic-stage lifetimes 2 to 4 times longer than the exponential-decay estimate used by STAR.
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Examining hadronic resonance dynamics at energies available at the CERN Large Hadron Collider: Insights from EPOS4
EPOS4 with a hadronic afterburner reproduces resonance suppression patterns, and the extracted hadronic phase lifetime increases with multiplicity and system size, remaining non-zero in high-multiplicity pp collisions.
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