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QCD corrections to ZZ production in gluon fusion at the LHC

We compute the next-to-leading order QCD corrections to the production of two Z-bosons in the annihilation of two gluons at the LHC. Being enhanced by a large gluon flux, these corrections provide distinct and, potentially, the dominant part of the N$^3$LO QCD contributions to Z-pair production in p...

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Detalles Bibliográficos
Autores principales: Caola, Fabrizio, Melnikov, Kirill, Röntsch, Raoul, Tancredi, Lorenzo
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.92.094028
http://cds.cern.ch/record/2054713
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author Caola, Fabrizio
Melnikov, Kirill
Röntsch, Raoul
Tancredi, Lorenzo
author_facet Caola, Fabrizio
Melnikov, Kirill
Röntsch, Raoul
Tancredi, Lorenzo
author_sort Caola, Fabrizio
collection CERN
description We compute the next-to-leading order QCD corrections to the production of two Z-bosons in the annihilation of two gluons at the LHC. Being enhanced by a large gluon flux, these corrections provide distinct and, potentially, the dominant part of the N$^3$LO QCD contributions to Z-pair production in proton collisions. The $gg \to ZZ$ annihilation is a loop-induced process that receives the dominant contribution from loops of five light quarks, that are included in our computation in the massless approximation. We find that QCD corrections increase the $gg \to ZZ$ production cross section by ${\cal O}(50\%-100\%)$ depending on the values of the renormalization and factorization scales used in the leading order computation, and the collider energy. The large corrections to $gg \to ZZ$ channel increase the $pp \to ZZ$ cross section by about six to eight percent, exceeding the estimated theoretical uncertainty of the recent NNLO QCD calculation.
id cern-2054713
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-20547132022-08-10T13:05:45Zdoi:10.1103/PhysRevD.92.094028http://cds.cern.ch/record/2054713engCaola, FabrizioMelnikov, KirillRöntsch, RaoulTancredi, LorenzoQCD corrections to ZZ production in gluon fusion at the LHCParticle Physics - PhenomenologyWe compute the next-to-leading order QCD corrections to the production of two Z-bosons in the annihilation of two gluons at the LHC. Being enhanced by a large gluon flux, these corrections provide distinct and, potentially, the dominant part of the N$^3$LO QCD contributions to Z-pair production in proton collisions. The $gg \to ZZ$ annihilation is a loop-induced process that receives the dominant contribution from loops of five light quarks, that are included in our computation in the massless approximation. We find that QCD corrections increase the $gg \to ZZ$ production cross section by ${\cal O}(50\%-100\%)$ depending on the values of the renormalization and factorization scales used in the leading order computation, and the collider energy. The large corrections to $gg \to ZZ$ channel increase the $pp \to ZZ$ cross section by about six to eight percent, exceeding the estimated theoretical uncertainty of the recent NNLO QCD calculation.We compute the next-to-leading-order QCD corrections to the production of two Z-bosons in the annihilation of two gluons at the LHC. Being enhanced by a large gluon flux, these corrections provide a distinct and, potentially, the dominant part of the N3LO QCD contributions to Z-pair production in proton collisions. The gg→ZZ annihilation is a loop-induced process that receives the dominant contribution from loops of five light quarks, that are included in our computation in the massless approximation. We find that QCD corrections increase the gg→ZZ production cross section by O(50%–100%) depending on the values of the renormalization and factorization scales used in the leading-order computation and the collider energy. The large corrections to the gg→ZZ channel increase the pp→ZZ cross section by about 6% to 8%, exceeding the estimated theoretical uncertainty of the recent next-to-next-to-leading-order QCD calculation.We compute the next-to-leading order QCD corrections to the production of two Z-bosons in the annihilation of two gluons at the LHC. Being enhanced by a large gluon flux, these corrections provide distinct and, potentially, the dominant part of the N$^3$LO QCD contributions to Z-pair production in proton collisions. The $gg \to ZZ$ annihilation is a loop-induced process that receives the dominant contribution from loops of five light quarks, that are included in our computation in the massless approximation. We find that QCD corrections increase the $gg \to ZZ$ production cross section by ${\cal O}(50\%-100\%)$ depending on the values of the renormalization and factorization scales used in the leading order computation, and the collider energy. The large corrections to $gg \to ZZ$ channel increase the $pp \to ZZ$ cross section by about six to eight percent, exceeding the estimated theoretical uncertainty of the recent NNLO QCD calculation.TTP15-035CERN-PH-TH-2015-226FERMILAB-PUB-15-398-TarXiv:1509.06734TTP15-035CERN-PH-TH-2015-226FERMILAB-PUB-15-398-Toai:cds.cern.ch:20547132015-09-22
spellingShingle Particle Physics - Phenomenology
Caola, Fabrizio
Melnikov, Kirill
Röntsch, Raoul
Tancredi, Lorenzo
QCD corrections to ZZ production in gluon fusion at the LHC
title QCD corrections to ZZ production in gluon fusion at the LHC
title_full QCD corrections to ZZ production in gluon fusion at the LHC
title_fullStr QCD corrections to ZZ production in gluon fusion at the LHC
title_full_unstemmed QCD corrections to ZZ production in gluon fusion at the LHC
title_short QCD corrections to ZZ production in gluon fusion at the LHC
title_sort qcd corrections to zz production in gluon fusion at the lhc
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.92.094028
http://cds.cern.ch/record/2054713
work_keys_str_mv AT caolafabrizio qcdcorrectionstozzproductioningluonfusionatthelhc
AT melnikovkirill qcdcorrectionstozzproductioningluonfusionatthelhc
AT rontschraoul qcdcorrectionstozzproductioningluonfusionatthelhc
AT tancredilorenzo qcdcorrectionstozzproductioningluonfusionatthelhc