Correlations of Feed-down Hadrons in a Thermal Model

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Hauptverfasser: Pruneau, Claude, Gonzalez, Victor, Sheibani, Oveis, Shen, Chun, Patley, Yash, Nandi, Basanta, Marin, Ana
Format: Preprint
Veröffentlicht: 2026
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author Pruneau, Claude
Gonzalez, Victor
Sheibani, Oveis
Shen, Chun
Patley, Yash
Nandi, Basanta
Marin, Ana
author_facet Pruneau, Claude
Gonzalez, Victor
Sheibani, Oveis
Shen, Chun
Patley, Yash
Nandi, Basanta
Marin, Ana
contents We examine the potential impact of strong decays on the magnitude of fluctuations of net quantum numbers and integrals of balance functions based on a thermal hadron gas model. The calculations are based on a comprehensive list of known hadrons with masses up to 2.5 GeV/$c^2$ and include all decays of these hadrons with known branching fractions. The calculations are performed at vanishing baryo-chemical potential for temperatures between 140 and 200 MeV. We show that the decays feed-down substantially impact the single yield of measurable ``stable particles" as well as those of correlated densities of these species. Decays can then potentially have large and non-trivial impacts on measurements of net quantum number cumulants and balance functions. These observations are particularly important in the context of the search for the QCD critical point at the RHIC Beam Energy Scan as well as efforts to determine chemical susceptibilities near the phase transition at RHIC or LHC energies. Results obtained in this work also shed light on the importance of feed-down in measurements of balance functions in elementary p-p and nucleus-nucleus collisions.
format Preprint
id arxiv_https___arxiv_org_abs_2602_07099
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Correlations of Feed-down Hadrons in a Thermal Model
Pruneau, Claude
Gonzalez, Victor
Sheibani, Oveis
Shen, Chun
Patley, Yash
Nandi, Basanta
Marin, Ana
Nuclear Theory
High Energy Physics - Phenomenology
Nuclear Experiment
We examine the potential impact of strong decays on the magnitude of fluctuations of net quantum numbers and integrals of balance functions based on a thermal hadron gas model. The calculations are based on a comprehensive list of known hadrons with masses up to 2.5 GeV/$c^2$ and include all decays of these hadrons with known branching fractions. The calculations are performed at vanishing baryo-chemical potential for temperatures between 140 and 200 MeV. We show that the decays feed-down substantially impact the single yield of measurable ``stable particles" as well as those of correlated densities of these species. Decays can then potentially have large and non-trivial impacts on measurements of net quantum number cumulants and balance functions. These observations are particularly important in the context of the search for the QCD critical point at the RHIC Beam Energy Scan as well as efforts to determine chemical susceptibilities near the phase transition at RHIC or LHC energies. Results obtained in this work also shed light on the importance of feed-down in measurements of balance functions in elementary p-p and nucleus-nucleus collisions.
title Correlations of Feed-down Hadrons in a Thermal Model
topic Nuclear Theory
High Energy Physics - Phenomenology
Nuclear Experiment
url https://arxiv.org/abs/2602.07099