Closepacking effects on strangeness and baryon production at the LHC

Fuente: arXiv
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Main Authors: Altmann, Javira, Bernardinis, Lorenzo, Skands, Peter, Zaccolo, Valentina
Format: Preprint
Published: 2025
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author Altmann, Javira
Bernardinis, Lorenzo
Skands, Peter
Zaccolo, Valentina
author_facet Altmann, Javira
Bernardinis, Lorenzo
Skands, Peter
Zaccolo, Valentina
contents Data from the LHC show a rise in strange-hadron production with charged-particle multiplicity in pp collisions. The Monte-Carlo event generator PYTHIA, using its default Monash tune, instead predicts constant strangeness. We investigate a mechanism invoked during hadronization called string closepacking, where overlapping strings generate a background field, here assumed to be predominantly aligned with the beam axis. This increases the effective string tension, reducing strangeness suppression and thus enhancing strangeness production. We tune this model to LHC data and contrast it with several alternatives. We comment specifically on the challenge of simultaneously describing the non-strange p/pi ratio, and introduce a mechanism which may act to suppress it. Many of the salient particle-production ratios can be qualitatively described by this model, although the XiC/D ratio and the shape of pT spectra remain challenging to account for.
format Preprint
id arxiv_https___arxiv_org_abs_2512_00671
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Closepacking effects on strangeness and baryon production at the LHC
Altmann, Javira
Bernardinis, Lorenzo
Skands, Peter
Zaccolo, Valentina
High Energy Physics - Phenomenology
High Energy Physics - Experiment
Data from the LHC show a rise in strange-hadron production with charged-particle multiplicity in pp collisions. The Monte-Carlo event generator PYTHIA, using its default Monash tune, instead predicts constant strangeness. We investigate a mechanism invoked during hadronization called string closepacking, where overlapping strings generate a background field, here assumed to be predominantly aligned with the beam axis. This increases the effective string tension, reducing strangeness suppression and thus enhancing strangeness production. We tune this model to LHC data and contrast it with several alternatives. We comment specifically on the challenge of simultaneously describing the non-strange p/pi ratio, and introduce a mechanism which may act to suppress it. Many of the salient particle-production ratios can be qualitatively described by this model, although the XiC/D ratio and the shape of pT spectra remain challenging to account for.
title Closepacking effects on strangeness and baryon production at the LHC
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2512.00671