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NRQCD Confronts LHCb Data on Quarkonium Production within Jets

We analyze the recent LHCb measurement of the distribution of the fraction of the transverse momentum, z(J/ψ), carried by the J/ψ within a jet. LHCb data are compared with analytic calculations using the fragmenting jet function (FJF) formalism for studying J/ψ in jets. Logarithms in the FJFs are re...

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Autores principales: Bain, Reggie, Dai, Lin, Leibovich, Adam, Makris, Yiannis, Mehen, Thomas
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevLett.119.032002
http://cds.cern.ch/record/2759227
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author Bain, Reggie
Dai, Lin
Leibovich, Adam
Makris, Yiannis
Mehen, Thomas
author_facet Bain, Reggie
Dai, Lin
Leibovich, Adam
Makris, Yiannis
Mehen, Thomas
author_sort Bain, Reggie
collection CERN
description We analyze the recent LHCb measurement of the distribution of the fraction of the transverse momentum, z(J/ψ), carried by the J/ψ within a jet. LHCb data are compared with analytic calculations using the fragmenting jet function (FJF) formalism for studying J/ψ in jets. Logarithms in the FJFs are resummed using Dokshitzer-Gribov-Lipatov-Altarelli-Parisi evolution. We also convolve hard QCD partonic cross sections, showered with pythia, with leading order nonrelativistic quantum chromodynamics (NRQCD) fragmentation functions and obtain consistent results. Both approaches use madgraph to calculate the hard process that creates the jet initiating parton. These calculations give reasonable agreement with the z(J/ψ) distribution that was shown to be poorly described by default pythia simulations in the LHCb paper. We compare our predictions for the J/ψ distribution using various extractions of nonperturbative NRQCD long-distance matrix elements (LDMEs) in the literature. NRQCD calculations agree with LHCb data better than default pythia regardless of which fit to the LDMEs is used. LDMEs from fits that focus exclusively on high transverse momentum data from colliders are in good agreement with the LHCb measurement.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-27592272023-03-14T18:36:15Zdoi:10.1103/PhysRevLett.119.032002http://cds.cern.ch/record/2759227engBain, ReggieDai, LinLeibovich, AdamMakris, YiannisMehen, ThomasNRQCD Confronts LHCb Data on Quarkonium Production within Jetsnucl-thNuclear Physics - Theoryhep-phParticle Physics - PhenomenologyWe analyze the recent LHCb measurement of the distribution of the fraction of the transverse momentum, z(J/ψ), carried by the J/ψ within a jet. LHCb data are compared with analytic calculations using the fragmenting jet function (FJF) formalism for studying J/ψ in jets. Logarithms in the FJFs are resummed using Dokshitzer-Gribov-Lipatov-Altarelli-Parisi evolution. We also convolve hard QCD partonic cross sections, showered with pythia, with leading order nonrelativistic quantum chromodynamics (NRQCD) fragmentation functions and obtain consistent results. Both approaches use madgraph to calculate the hard process that creates the jet initiating parton. These calculations give reasonable agreement with the z(J/ψ) distribution that was shown to be poorly described by default pythia simulations in the LHCb paper. We compare our predictions for the J/ψ distribution using various extractions of nonperturbative NRQCD long-distance matrix elements (LDMEs) in the literature. NRQCD calculations agree with LHCb data better than default pythia regardless of which fit to the LDMEs is used. LDMEs from fits that focus exclusively on high transverse momentum data from colliders are in good agreement with the LHCb measurement.We analyze the recent LHCb measurement of the distribution of the fraction of the transverse momentum, $z(J/\psi)$, carried by the $J/\psi$ within a jet. LHCb data is compared to analytic calculations using the fragmenting jet function (FJF) formalism for studying $J/\psi$ in jets. Logarithms in the FJFs are resummed using DGLAP evolution. We also convolve hard QCD partonic cross sections, showered with PYTHIA, with leading order Non Relativistic Quantum Chromodynamics (NRQCD) fragmentation functions and obtain consistent results. Both approaches use Madgraph to calculate the hard process that creates the jet initiating parton. These calculations give reasonable agreement with the $z(J/\psi)$ distribution that was shown to be poorly described by default PYTHIA simulations in the LHCb paper. We compare our predictions for the $J/\psi$ distribution using various extractions of nonperturbative NRQCD long-distance matrix elements (LDMEs) in the literature. NRQCD calculations agree with LHCb data better than default PYTHIA regardless of which fit to the LDMEs is used. LDMEs from fits that focus exclusively on high transverse momentum data from colliders are in good agreement with the LHCb measurement.arXiv:1702.05525oai:cds.cern.ch:27592272017-02-17
spellingShingle nucl-th
Nuclear Physics - Theory
hep-ph
Particle Physics - Phenomenology
Bain, Reggie
Dai, Lin
Leibovich, Adam
Makris, Yiannis
Mehen, Thomas
NRQCD Confronts LHCb Data on Quarkonium Production within Jets
title NRQCD Confronts LHCb Data on Quarkonium Production within Jets
title_full NRQCD Confronts LHCb Data on Quarkonium Production within Jets
title_fullStr NRQCD Confronts LHCb Data on Quarkonium Production within Jets
title_full_unstemmed NRQCD Confronts LHCb Data on Quarkonium Production within Jets
title_short NRQCD Confronts LHCb Data on Quarkonium Production within Jets
title_sort nrqcd confronts lhcb data on quarkonium production within jets
topic nucl-th
Nuclear Physics - Theory
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevLett.119.032002
http://cds.cern.ch/record/2759227
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AT leibovichadam nrqcdconfrontslhcbdataonquarkoniumproductionwithinjets
AT makrisyiannis nrqcdconfrontslhcbdataonquarkoniumproductionwithinjets
AT mehenthomas nrqcdconfrontslhcbdataonquarkoniumproductionwithinjets