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Apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions

The increase of strange-particle yields relative to pions versus charged-particle multiplicity in proton-proton (pp) collisions at the LHC is usually described by microscopic or hydrodynamical models as a result of the increasing density of produced partons or strings and their interactions. Instead...

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Detalles Bibliográficos
Autores principales: Loizides, Constantin, Morsch, Andreas
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2781126
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author Loizides, Constantin
Morsch, Andreas
author_facet Loizides, Constantin
Morsch, Andreas
author_sort Loizides, Constantin
collection CERN
description The increase of strange-particle yields relative to pions versus charged-particle multiplicity in proton-proton (pp) collisions at the LHC is usually described by microscopic or hydrodynamical models as a result of the increasing density of produced partons or strings and their interactions. Instead, we consider the multiple partonic interaction (MPI) picture originally developed in the context of the PYTHIA event generator. We find that strangeness enhancement in PYTHIA is hidden by a large excess of low-$p_{\rm T}$ multi-strange baryons, which mainly results from the hadronization of $u$-quark, $d$-quark and gluon ($udg$) strings. Strange baryons produced in strings formed from parton showers initiated by strange quarks ($s$-fragmentation), however, describe well the spectral shapes of $\Xi$ and $\Omega$ baryons and their multiplicity dependence. Since the total particle yield contains contributions from soft and hard particle production, which cannot be experimentally separated, we argue that the correct description of the $p_{\rm T}$-spectra is a minimum requirement for meaningful comparisons of multiplicity dependent yield measurements to MPI based calculations. We demonstrate that the $s$-fragmentation component describes the increase of average $p_{\rm T}$ and yields with multiplicity seen in the data, including the approximate multiplicity scaling for different collision energies. When restricted to processes that reproduce the measured $p_{\rm T}$-spectra, the MPI framework exhibits a smooth evolution from strictly proportional multiplicity scaling ($K_{\rm S}^0$, $\Lambda$, where the $udg$-hadronization component dominates) to linearity ($s$-fragmentation) and on to increasingly non-linear behavior ($c$-, $b$-quark and high-$p_{\rm T}$ jet fragmentation), hence providing a unified approach for particle production in pp collisions.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
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spelling cern-27811262023-03-14T20:16:30Zhttp://cds.cern.ch/record/2781126engLoizides, ConstantinMorsch, AndreasApparent strangeness enhancement from multiplicity selection in high energy proton-proton collisionsnucl-exNuclear Physics - Experimenthep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyThe increase of strange-particle yields relative to pions versus charged-particle multiplicity in proton-proton (pp) collisions at the LHC is usually described by microscopic or hydrodynamical models as a result of the increasing density of produced partons or strings and their interactions. Instead, we consider the multiple partonic interaction (MPI) picture originally developed in the context of the PYTHIA event generator. We find that strangeness enhancement in PYTHIA is hidden by a large excess of low-$p_{\rm T}$ multi-strange baryons, which mainly results from the hadronization of $u$-quark, $d$-quark and gluon ($udg$) strings. Strange baryons produced in strings formed from parton showers initiated by strange quarks ($s$-fragmentation), however, describe well the spectral shapes of $\Xi$ and $\Omega$ baryons and their multiplicity dependence. Since the total particle yield contains contributions from soft and hard particle production, which cannot be experimentally separated, we argue that the correct description of the $p_{\rm T}$-spectra is a minimum requirement for meaningful comparisons of multiplicity dependent yield measurements to MPI based calculations. We demonstrate that the $s$-fragmentation component describes the increase of average $p_{\rm T}$ and yields with multiplicity seen in the data, including the approximate multiplicity scaling for different collision energies. When restricted to processes that reproduce the measured $p_{\rm T}$-spectra, the MPI framework exhibits a smooth evolution from strictly proportional multiplicity scaling ($K_{\rm S}^0$, $\Lambda$, where the $udg$-hadronization component dominates) to linearity ($s$-fragmentation) and on to increasingly non-linear behavior ($c$-, $b$-quark and high-$p_{\rm T}$ jet fragmentation), hence providing a unified approach for particle production in pp collisions.arXiv:2109.05181oai:cds.cern.ch:27811262021-09-11
spellingShingle nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
Loizides, Constantin
Morsch, Andreas
Apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions
title Apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions
title_full Apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions
title_fullStr Apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions
title_full_unstemmed Apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions
title_short Apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions
title_sort apparent strangeness enhancement from multiplicity selection in high energy proton-proton collisions
topic nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
url http://cds.cern.ch/record/2781126
work_keys_str_mv AT loizidesconstantin apparentstrangenessenhancementfrommultiplicityselectioninhighenergyprotonprotoncollisions
AT morschandreas apparentstrangenessenhancementfrommultiplicityselectioninhighenergyprotonprotoncollisions