Finite quark-mass effects in Higgs boson production with dijets at large energies
Abstract The production of a Higgs boson in association with at least two jets receives contributions both from the fusion of weak vector bosons (VBF) and from QCD processes, especially gluon fusion (GF). The former process is important for measuring the coupling of the Higgs boson to weak bosons, w...
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doaj-211474bd52f041bcbf614b16186360a42020-11-25T02:01:14ZengSpringerOpenJournal of High Energy Physics1029-84792019-04-012019414210.1007/JHEP04(2019)127Finite quark-mass effects in Higgs boson production with dijets at large energiesJeppe R. Andersen0James D. Cockburn1Marian Heil2Andreas Maier3Jennifer M. Smillie4Institute for Particle Physics Phenomenology, University of DurhamHiggs Centre for Theoretical Physics, University of EdinburghInstitute for Particle Physics Phenomenology, University of DurhamDeutsches Elektronen-Synchrotron, DESYHiggs Centre for Theoretical Physics, University of EdinburghAbstract The production of a Higgs boson in association with at least two jets receives contributions both from the fusion of weak vector bosons (VBF) and from QCD processes, especially gluon fusion (GF). The former process is important for measuring the coupling of the Higgs boson to weak bosons, whereas the latter process plays an important role in determining any CP-admixtures in the Higgs sector. In this paper we go beyond the current state-of-the-art for fixed order calculations of the GF process (i.e. one loop H + 2j including full quark mass effects) by including the all-order effects in leading log(ŝ/p t 2 ), together with full quark mass and loop-propagator kinematic effects. We calculate the mass-dependent components and implement the resummation within the framework of High Energy Jets. The high-energy effects suppress the prediction compared to fixed order at large Δy 12 and m jj (and therefore within the usual VBF cuts of widely separated jets), just as found in the limit of m t → ∞. The mass dependence is more significant than at fixed order, because the systematic inclusion of the leading logarithms in ŝ/p t 2 results in a hardening of the transverse momentum of the Higgs boson, which in turn probes in more detail the loop-structure of the coupling. In particular, the full mass dependence reduces the cross section within VBF cuts by 11% compared to a calculation based just on the infinite top mass limit, but the impact of the bottom quark remains small. This all implies that the gluon-fusion contribution within VBF-cuts is less severe than current estimates suggest.http://link.springer.com/article/10.1007/JHEP04(2019)127Perturbative QCDResummationHiggs Physics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jeppe R. Andersen James D. Cockburn Marian Heil Andreas Maier Jennifer M. Smillie |
spellingShingle |
Jeppe R. Andersen James D. Cockburn Marian Heil Andreas Maier Jennifer M. Smillie Finite quark-mass effects in Higgs boson production with dijets at large energies Journal of High Energy Physics Perturbative QCD Resummation Higgs Physics |
author_facet |
Jeppe R. Andersen James D. Cockburn Marian Heil Andreas Maier Jennifer M. Smillie |
author_sort |
Jeppe R. Andersen |
title |
Finite quark-mass effects in Higgs boson production with dijets at large energies |
title_short |
Finite quark-mass effects in Higgs boson production with dijets at large energies |
title_full |
Finite quark-mass effects in Higgs boson production with dijets at large energies |
title_fullStr |
Finite quark-mass effects in Higgs boson production with dijets at large energies |
title_full_unstemmed |
Finite quark-mass effects in Higgs boson production with dijets at large energies |
title_sort |
finite quark-mass effects in higgs boson production with dijets at large energies |
publisher |
SpringerOpen |
series |
Journal of High Energy Physics |
issn |
1029-8479 |
publishDate |
2019-04-01 |
description |
Abstract The production of a Higgs boson in association with at least two jets receives contributions both from the fusion of weak vector bosons (VBF) and from QCD processes, especially gluon fusion (GF). The former process is important for measuring the coupling of the Higgs boson to weak bosons, whereas the latter process plays an important role in determining any CP-admixtures in the Higgs sector. In this paper we go beyond the current state-of-the-art for fixed order calculations of the GF process (i.e. one loop H + 2j including full quark mass effects) by including the all-order effects in leading log(ŝ/p t 2 ), together with full quark mass and loop-propagator kinematic effects. We calculate the mass-dependent components and implement the resummation within the framework of High Energy Jets. The high-energy effects suppress the prediction compared to fixed order at large Δy 12 and m jj (and therefore within the usual VBF cuts of widely separated jets), just as found in the limit of m t → ∞. The mass dependence is more significant than at fixed order, because the systematic inclusion of the leading logarithms in ŝ/p t 2 results in a hardening of the transverse momentum of the Higgs boson, which in turn probes in more detail the loop-structure of the coupling. In particular, the full mass dependence reduces the cross section within VBF cuts by 11% compared to a calculation based just on the infinite top mass limit, but the impact of the bottom quark remains small. This all implies that the gluon-fusion contribution within VBF-cuts is less severe than current estimates suggest. |
topic |
Perturbative QCD Resummation Higgs Physics |
url |
http://link.springer.com/article/10.1007/JHEP04(2019)127 |
work_keys_str_mv |
AT jepperandersen finitequarkmasseffectsinhiggsbosonproductionwithdijetsatlargeenergies AT jamesdcockburn finitequarkmasseffectsinhiggsbosonproductionwithdijetsatlargeenergies AT marianheil finitequarkmasseffectsinhiggsbosonproductionwithdijetsatlargeenergies AT andreasmaier finitequarkmasseffectsinhiggsbosonproductionwithdijetsatlargeenergies AT jennifermsmillie finitequarkmasseffectsinhiggsbosonproductionwithdijetsatlargeenergies |
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1724957871570944000 |