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Quarkonium cross sections and polarizations in pp collisions with CMS

According to NRQCD, quarkonium production starts with the production of a pre-resonant quark-antiquark ( QQ‾ ) pair that then binds into the observed quarkonium state through a possible interaction with surroundings. Understanding this interaction would play a crucial role in the interpretation of t...

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Autor principal: Ferraioli, Charles
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nuclphysbps.2016.05.030
http://cds.cern.ch/record/2057558
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author Ferraioli, Charles
author_facet Ferraioli, Charles
author_sort Ferraioli, Charles
collection CERN
description According to NRQCD, quarkonium production starts with the production of a pre-resonant quark-antiquark ( QQ‾ ) pair that then binds into the observed quarkonium state through a possible interaction with surroundings. Understanding this interaction would play a crucial role in the interpretation of the quarkonium suppression patterns as signatures of quark-gluon plasma formation. Unlike the measurements of quarkonium differential cross sections, which reflect partonic processes and are sensitive to initial-state effects, the polarization measurements are unambiguous probes of the final-state quarkonium formation process, determined by the quantum properties of the QQ‾ : a change in polarization would be a direct signal, virtually unaffected by initial-state phenomena, of a change in binding mechanism. This report presents the ψ(nS) and ϒ(nS) cross sections and polarizations measured by CMS, using dimuon samples collected in pp collisions at s=7 TeV . The cross sections of five S-wave states extend up to or exceed pT=100 GeV , probing kinematical windows where the theory calculations are supposed to be the most reliable. The polarizations are measured up to high p T at midrapidity, and the Upsilon polarizations are also shown as a function of the number of charged particles produced in the pp collision.
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spelling cern-20575582019-09-30T06:29:59Zdoi:10.1016/j.nuclphysbps.2016.05.030http://cds.cern.ch/record/2057558engFerraioli, CharlesQuarkonium cross sections and polarizations in pp collisions with CMSDetectors and Experimental TechniquesAccording to NRQCD, quarkonium production starts with the production of a pre-resonant quark-antiquark ( QQ‾ ) pair that then binds into the observed quarkonium state through a possible interaction with surroundings. Understanding this interaction would play a crucial role in the interpretation of the quarkonium suppression patterns as signatures of quark-gluon plasma formation. Unlike the measurements of quarkonium differential cross sections, which reflect partonic processes and are sensitive to initial-state effects, the polarization measurements are unambiguous probes of the final-state quarkonium formation process, determined by the quantum properties of the QQ‾ : a change in polarization would be a direct signal, virtually unaffected by initial-state phenomena, of a change in binding mechanism. This report presents the ψ(nS) and ϒ(nS) cross sections and polarizations measured by CMS, using dimuon samples collected in pp collisions at s=7 TeV . The cross sections of five S-wave states extend up to or exceed pT=100 GeV , probing kinematical windows where the theory calculations are supposed to be the most reliable. The polarizations are measured up to high p T at midrapidity, and the Upsilon polarizations are also shown as a function of the number of charged particles produced in the pp collision.According to NRQCD, quarkonium production starts with the (short-distance) production of a pre-resonant quark-antiquark pair, QQbar, that then binds into the observed quarkonium state, changing (octet) or not (singlet) its angular momentum and spin, with probabilities (long-distance matrix elements, LDMEs) conjectured to be constant and universal identical LDMEs should be extracted from, e.g., proton-(anti)proton and e+e- data. The non-perturbative bound state formation described by the octet LDMEs involves the interaction with the surrounding medium in the event, since the initial QQbar must neutralize its colour by absorbing or emitting soft gluons the LDMEs could be different between proton-proton and nucleus-nucleus collisions. Such a difference, besides calling to question the universality hypothesis of NRQCD, would play a crucial role in the interpretation of the quarkonium suppression patterns as signatures of quark-gluon plasma formation. Unlike the measurements of quarkonium differential cross sections, which reflect partonic processes and are sensitive to initial-state effects (modified parton distribution functions, Cronin effect, parton energy loss, etc.), the polarization measurements are unambiguous probes of the (final state) quarkonium formation process, determined by the quantum properties of the QQbar a change in polarization would be a direct signal, virtually unaffected by initial-state phenomena, of a change in the binding mechanism. This talk presents the charmonium and bottomonium cross sections and polarizations measured by CMS, using dimuon samples collected in pp collisions at 7 TeV. The cross sections of five S-wave states extend up to or exceed pT = 100 GeV, probing kinematical windows where the theory calculations are supposed to be the most reliable. The Upsilon cross sections and polarizations are also shown (for the first time) as a function of the number of charged particles produced in the collision. These results provide crucial inputs to a better understanding of quarkonium production as a signal of new physics in PbPb collisions.CMS-CR-2015-177oai:cds.cern.ch:20575582015-09-14
spellingShingle Detectors and Experimental Techniques
Ferraioli, Charles
Quarkonium cross sections and polarizations in pp collisions with CMS
title Quarkonium cross sections and polarizations in pp collisions with CMS
title_full Quarkonium cross sections and polarizations in pp collisions with CMS
title_fullStr Quarkonium cross sections and polarizations in pp collisions with CMS
title_full_unstemmed Quarkonium cross sections and polarizations in pp collisions with CMS
title_short Quarkonium cross sections and polarizations in pp collisions with CMS
title_sort quarkonium cross sections and polarizations in pp collisions with cms
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nuclphysbps.2016.05.030
http://cds.cern.ch/record/2057558
work_keys_str_mv AT ferraiolicharles quarkoniumcrosssectionsandpolarizationsinppcollisionswithcms