Quarkonium production in the LHC era: A polarized perspective
Polarization measurements are usually considered as the most difficult challenge for the QCD description of quarkonium production. In fact, global data fits for the determination of the non-perturbative parameters of bound-state formation traditionally exclude polarization observables and use them a...
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doaj-32349c0f6a1a4bf597c7fcb2a88d04062020-11-24T21:30:59ZengElsevierPhysics Letters B0370-26931873-24452014-09-01736C9810910.1016/j.physletb.2014.07.006Quarkonium production in the LHC era: A polarized perspectivePietro Faccioli0Valentin Knünz1Carlos Lourenço2João Seixas3Hermine K. Wöhri4Laboratório de Instrumentação e Física Experimental de Partículas (LIP), Lisbon, PortugalInstitute of High Energy Physics (HEPHY), Vienna, AustriaEuropean Organization for Nuclear Research (CERN), Geneva, SwitzerlandLaboratório de Instrumentação e Física Experimental de Partículas (LIP), Lisbon, PortugalEuropean Organization for Nuclear Research (CERN), Geneva, SwitzerlandPolarization measurements are usually considered as the most difficult challenge for the QCD description of quarkonium production. In fact, global data fits for the determination of the non-perturbative parameters of bound-state formation traditionally exclude polarization observables and use them as a posteriori verifications of the predictions, with perplexing results. With a change of perspective, we move polarization data to the centre of the study, advocating that they actually provide the strongest fundamental indications about the production mechanisms, even before we explicitly consider perturbative calculations. Considering ψ(2S) and ϒ(3S) measurements from LHC experiments and state-of-the-art next-to-leading order cross sections for the short-distance production of heavy quark–antiquark pairs of relevant colour and angular momentum configurations, we perform a search for a kinematic domain where quarkonium polarizations can be correctly reproduced together with the respective cross sections, by systematically scanning the phase space and accurately treating the experimental uncertainties. This strategy provides a straightforward solution to the “quarkonium polarization puzzle” and reassuring signs that the factorization of short- and long-distance effects works, at least in the high-transverse-momentum region, least affected by limitations in the current fixed-order calculations. The results expose unexpected hierarchies in the phenomenological long-distance parameters that open new paths towards the understanding of bound-state formation in QCD.http://www.sciencedirect.com/science/article/pii/S0370269314004924QuarkoniumPolarizationNRQCDQCDHadron formation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pietro Faccioli Valentin Knünz Carlos Lourenço João Seixas Hermine K. Wöhri |
spellingShingle |
Pietro Faccioli Valentin Knünz Carlos Lourenço João Seixas Hermine K. Wöhri Quarkonium production in the LHC era: A polarized perspective Physics Letters B Quarkonium Polarization NRQCD QCD Hadron formation |
author_facet |
Pietro Faccioli Valentin Knünz Carlos Lourenço João Seixas Hermine K. Wöhri |
author_sort |
Pietro Faccioli |
title |
Quarkonium production in the LHC era: A polarized perspective |
title_short |
Quarkonium production in the LHC era: A polarized perspective |
title_full |
Quarkonium production in the LHC era: A polarized perspective |
title_fullStr |
Quarkonium production in the LHC era: A polarized perspective |
title_full_unstemmed |
Quarkonium production in the LHC era: A polarized perspective |
title_sort |
quarkonium production in the lhc era: a polarized perspective |
publisher |
Elsevier |
series |
Physics Letters B |
issn |
0370-2693 1873-2445 |
publishDate |
2014-09-01 |
description |
Polarization measurements are usually considered as the most difficult challenge for the QCD description of quarkonium production. In fact, global data fits for the determination of the non-perturbative parameters of bound-state formation traditionally exclude polarization observables and use them as a posteriori verifications of the predictions, with perplexing results. With a change of perspective, we move polarization data to the centre of the study, advocating that they actually provide the strongest fundamental indications about the production mechanisms, even before we explicitly consider perturbative calculations.
Considering ψ(2S) and ϒ(3S) measurements from LHC experiments and state-of-the-art next-to-leading order cross sections for the short-distance production of heavy quark–antiquark pairs of relevant colour and angular momentum configurations, we perform a search for a kinematic domain where quarkonium polarizations can be correctly reproduced together with the respective cross sections, by systematically scanning the phase space and accurately treating the experimental uncertainties. This strategy provides a straightforward solution to the “quarkonium polarization puzzle” and reassuring signs that the factorization of short- and long-distance effects works, at least in the high-transverse-momentum region, least affected by limitations in the current fixed-order calculations. The results expose unexpected hierarchies in the phenomenological long-distance parameters that open new paths towards the understanding of bound-state formation in QCD. |
topic |
Quarkonium Polarization NRQCD QCD Hadron formation |
url |
http://www.sciencedirect.com/science/article/pii/S0370269314004924 |
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