Forward-Central Jet Correlations at the Large Hadron Collider

For high-pT forward processes at the Large Hadron Collider (LHC), QCD logarithmic corrections in the hard transverse momentum and in the large rapidity interval may both be quantitatively significant. The theoretical framework to resum consistently both kinds of logarithmic corrections to higher ord...

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Main Authors: Deak, M, Hautmann, F, Jung, H, Kutak, K
格式: Journal article
出版: 2010
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author Deak, M
Hautmann, F
Jung, H
Kutak, K
author_facet Deak, M
Hautmann, F
Jung, H
Kutak, K
author_sort Deak, M
collection OXFORD
description For high-pT forward processes at the Large Hadron Collider (LHC), QCD logarithmic corrections in the hard transverse momentum and in the large rapidity interval may both be quantitatively significant. The theoretical framework to resum consistently both kinds of logarithmic corrections to higher orders in perturbation theory is based on QCD high-energy factorization. We present numerical Monte Carlo applications of this method to final-state observables associated with production of one forward and one central jet. By computing jet correlations in rapidity and azimuth, we analyze the role of corrections to the parton-showering chain from large-angle gluon radiation, and discuss this in relationship with Monte Carlo results modeling interactions due to multiple parton chains.
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spelling oxford-uuid:dba4ddb1-c05c-455f-b918-aa80c65a212e2022-03-27T09:12:03ZForward-Central Jet Correlations at the Large Hadron ColliderJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:dba4ddb1-c05c-455f-b918-aa80c65a212eSymplectic Elements at Oxford2010Deak, MHautmann, FJung, HKutak, KFor high-pT forward processes at the Large Hadron Collider (LHC), QCD logarithmic corrections in the hard transverse momentum and in the large rapidity interval may both be quantitatively significant. The theoretical framework to resum consistently both kinds of logarithmic corrections to higher orders in perturbation theory is based on QCD high-energy factorization. We present numerical Monte Carlo applications of this method to final-state observables associated with production of one forward and one central jet. By computing jet correlations in rapidity and azimuth, we analyze the role of corrections to the parton-showering chain from large-angle gluon radiation, and discuss this in relationship with Monte Carlo results modeling interactions due to multiple parton chains.
spellingShingle Deak, M
Hautmann, F
Jung, H
Kutak, K
Forward-Central Jet Correlations at the Large Hadron Collider
title Forward-Central Jet Correlations at the Large Hadron Collider
title_full Forward-Central Jet Correlations at the Large Hadron Collider
title_fullStr Forward-Central Jet Correlations at the Large Hadron Collider
title_full_unstemmed Forward-Central Jet Correlations at the Large Hadron Collider
title_short Forward-Central Jet Correlations at the Large Hadron Collider
title_sort forward central jet correlations at the large hadron collider
work_keys_str_mv AT deakm forwardcentraljetcorrelationsatthelargehadroncollider
AT hautmannf forwardcentraljetcorrelationsatthelargehadroncollider
AT jungh forwardcentraljetcorrelationsatthelargehadroncollider
AT kutakk forwardcentraljetcorrelationsatthelargehadroncollider