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Strangeness production in Pb-Pb collisions with ALICE at the LHC

We present new ALICE results on the production of strange and multi-strange hadrons in Pb– Pb collisions at the top LHC energy of $\sqrt{s_{\mathrm{NN}}} = 5.02$ TeV. Strangeness production measurements are powerful tools for the study of the thermal properties of the deconfined state of QCD matter,...

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Autor principal: Kalinak, Peter
Lenguaje:eng
Publicado: SISSA 2018
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.314.0168
http://cds.cern.ch/record/2671904
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author Kalinak, Peter
author_facet Kalinak, Peter
author_sort Kalinak, Peter
collection CERN
description We present new ALICE results on the production of strange and multi-strange hadrons in Pb– Pb collisions at the top LHC energy of $\sqrt{s_{\mathrm{NN}}} = 5.02$ TeV. Strangeness production measurements are powerful tools for the study of the thermal properties of the deconfined state of QCD matter, the Quark-Gluon Plasma. Thanks to its unique tracking and PID capabilities, ALICE is able to measure weakly decaying particles through the topological reconstruction of the identified hadron decay products. Transverse momentum spectra of $K^0_S$ , $\Lambda$, $\Xi$ and $\Omega$ at central rapidity are presented as function of the collision centrality. The so-called baryon anomaly in the ratio $\Lambda/K^0_S$ is examined to probe particle production mechanisms: the position of the peak is sensitive to recombination processes, the high-$p_{\mathrm{T}}$ part can provide revealing insights on fragmentation and, finally, the steepness of the rising trend featuring for $p_{\mathrm{T}} \lesssim 2$ GeV/c can be connected to the hydrodynamic expansion of the system. In order to study strangeness enhancement, hyperon yields are normalised to the measurements of pion production in the corresponding centrality classes. Comparisons to lower energy results as well as to different collision systems will be shown. This offers a complete experimental picture that is used as a benchmark for commonly adopted phenomenological models, such as the thermal statistical hadronisation approach.
id oai-inspirehep.net-1664222
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
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spelling oai-inspirehep.net-16642222019-10-15T15:27:12Zdoi:10.22323/1.314.0168http://cds.cern.ch/record/2671904engKalinak, PeterStrangeness production in Pb-Pb collisions with ALICE at the LHCParticle Physics - ExperimentNuclear Physics - ExperimentWe present new ALICE results on the production of strange and multi-strange hadrons in Pb– Pb collisions at the top LHC energy of $\sqrt{s_{\mathrm{NN}}} = 5.02$ TeV. Strangeness production measurements are powerful tools for the study of the thermal properties of the deconfined state of QCD matter, the Quark-Gluon Plasma. Thanks to its unique tracking and PID capabilities, ALICE is able to measure weakly decaying particles through the topological reconstruction of the identified hadron decay products. Transverse momentum spectra of $K^0_S$ , $\Lambda$, $\Xi$ and $\Omega$ at central rapidity are presented as function of the collision centrality. The so-called baryon anomaly in the ratio $\Lambda/K^0_S$ is examined to probe particle production mechanisms: the position of the peak is sensitive to recombination processes, the high-$p_{\mathrm{T}}$ part can provide revealing insights on fragmentation and, finally, the steepness of the rising trend featuring for $p_{\mathrm{T}} \lesssim 2$ GeV/c can be connected to the hydrodynamic expansion of the system. In order to study strangeness enhancement, hyperon yields are normalised to the measurements of pion production in the corresponding centrality classes. Comparisons to lower energy results as well as to different collision systems will be shown. This offers a complete experimental picture that is used as a benchmark for commonly adopted phenomenological models, such as the thermal statistical hadronisation approach.We present new ALICE results on the production of strange and multi-strange hadrons in Pb--Pb collisions at the top LHC energy of $\sqrt{s_{\rm NN}}$ = 5.02 TeV.Strangeness production measurements are powerful tools for the study of the thermal properties of the deconfined state of QCD matter, the Quark-Gluon Plasma.Thanks to its unique tracking and PID capabilities, ALICE is able to measure weakly decaying particles through the topological reconstruction of the identified hadron decay products.Transverse momentum spectra of $\mathrm{K}^{0}_{S}$, $\Lambda$, $\Xi$ and $\Omega$ at central rapidity are presented as function of the collision centrality.The so-called baryon anomaly in the ratio $\Lambda$/$\mathrm{K}^{0}_{S}$ is examined to probe particle production mechanisms: the position of the peak is sensitive to recombination proces ses, the high-$p_{\rm T}$ part can provide revealing insights on fragmentation and, finally, the steepness of the rising trend featuring for $p_{\rm T} \lesssim$ 2 GeV/$c$ can be connected to the hydrodynamic expansion of the system.In order to study strangeness enhancement, hyperon yields are normalised to the measurements of pion production in the corresponding centrality classes.Comparisons to lower energy results as well as to different collision systems will be shown. This offers a complete experimental picture that is used as a benchmark for commonly adopted phenomenological models, such as the thermal statistical hadronisation approach.SISSAoai:inspirehep.net:16642222018
spellingShingle Particle Physics - Experiment
Nuclear Physics - Experiment
Kalinak, Peter
Strangeness production in Pb-Pb collisions with ALICE at the LHC
title Strangeness production in Pb-Pb collisions with ALICE at the LHC
title_full Strangeness production in Pb-Pb collisions with ALICE at the LHC
title_fullStr Strangeness production in Pb-Pb collisions with ALICE at the LHC
title_full_unstemmed Strangeness production in Pb-Pb collisions with ALICE at the LHC
title_short Strangeness production in Pb-Pb collisions with ALICE at the LHC
title_sort strangeness production in pb-pb collisions with alice at the lhc
topic Particle Physics - Experiment
Nuclear Physics - Experiment
url https://dx.doi.org/10.22323/1.314.0168
http://cds.cern.ch/record/2671904
work_keys_str_mv AT kalinakpeter strangenessproductioninpbpbcollisionswithaliceatthelhc