Abstract: We consider the transverse-momentum (qT) distribution of Drell-Yan lepton pairs produced, via W and Z/γ* decay, in hadronic collisions. At small values of qT, we resum the logarithmically-enhanced perturbative QCD contributions up to next-to-next-to-leading logarithmic accuracy. Resummed results are consistently combined with the known (Formula Presented.) fixed-order results at intermediate and large values of qT. Our calculation includes the leptonic decay of the vector boson with the corresponding spin correlations, the finite-width effects and the full dependence on the final-state lepton(s) kinematics. The computation is encoded in the numerical program DYRes, which allows the user to apply arbitrary kinematical cuts on the final-state leptons and to compute the corresponding distributions in the form of bin histograms. We present a comparison of our results with some of the available LHC data. The inclusion of the leptonic decay in the resummed calculation requires a theoretical discussion on the qT recoil due to the transverse momentum of the produced vector boson. We present a qT recoil procedure that is directly applicable to qT resummed calculations for generic production processes of high-mass systems in hadron collisions.

Vector boson production at hadron colliders : transverse-momentum resummation and leptonic decay / S. Catani, D. de Florian, G. Ferrera, M. Grazzini. - In: JOURNAL OF HIGH ENERGY PHYSICS. - ISSN 1029-8479. - 2015:12(2015), pp. 47.1-47.47. [10.1007/JHEP12(2015)047]

Vector boson production at hadron colliders : transverse-momentum resummation and leptonic decay

G. Ferrera;
2015

Abstract

Abstract: We consider the transverse-momentum (qT) distribution of Drell-Yan lepton pairs produced, via W and Z/γ* decay, in hadronic collisions. At small values of qT, we resum the logarithmically-enhanced perturbative QCD contributions up to next-to-next-to-leading logarithmic accuracy. Resummed results are consistently combined with the known (Formula Presented.) fixed-order results at intermediate and large values of qT. Our calculation includes the leptonic decay of the vector boson with the corresponding spin correlations, the finite-width effects and the full dependence on the final-state lepton(s) kinematics. The computation is encoded in the numerical program DYRes, which allows the user to apply arbitrary kinematical cuts on the final-state leptons and to compute the corresponding distributions in the form of bin histograms. We present a comparison of our results with some of the available LHC data. The inclusion of the leptonic decay in the resummed calculation requires a theoretical discussion on the qT recoil due to the transverse momentum of the produced vector boson. We present a qT recoil procedure that is directly applicable to qT resummed calculations for generic production processes of high-mass systems in hadron collisions.
QCD; Resummation; High Energy Physics - Phenomenology; High Energy Physics - Phenomenology; High Energy Physics - Experiment; Nuclear and High Energy Physics
Settore FIS/02 - Fisica Teorica, Modelli e Metodi Matematici
2015
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/362641
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