We present results of a computation of NLO QCD corrections to the production of an off-shell top-antitop pair in association with an off-shell W+ boson in proton-proton collisions. As the calculation is based on the full matrix elements for the process pp→ e +veμ−v¯ μτ+vτb b ¯ , all off-shell, spin-correlation, and interference effects are included. The NLO QCD corrections are about 20% for the integrated cross-section. Using a dynamical scale, the corrections to most distributions are at the same level, while some distributions show much larger K-factors in suppressed regions of phase space. We have performed a second calculation based on a double-pole approximation. While the corresponding results agree with the full calculation within few per cent for integrated cross-sections, the discrepancy can reach 10% and more in regions of phase space that are not dominated by top-antitop production. As a consequence, on-shell calculations should only be trusted to this level of accuracy.

Denner, A., Pelliccioli, G. (2020). NLO QCD corrections to off-shell t t ¯ W ± production at the LHC. JOURNAL OF HIGH ENERGY PHYSICS, 2020(11) [10.1007/JHEP11(2020)069].

NLO QCD corrections to off-shell t t ¯ W ± production at the LHC

Pelliccioli G.
2020

Abstract

We present results of a computation of NLO QCD corrections to the production of an off-shell top-antitop pair in association with an off-shell W+ boson in proton-proton collisions. As the calculation is based on the full matrix elements for the process pp→ e +veμ−v¯ μτ+vτb b ¯ , all off-shell, spin-correlation, and interference effects are included. The NLO QCD corrections are about 20% for the integrated cross-section. Using a dynamical scale, the corrections to most distributions are at the same level, while some distributions show much larger K-factors in suppressed regions of phase space. We have performed a second calculation based on a double-pole approximation. While the corresponding results agree with the full calculation within few per cent for integrated cross-sections, the discrepancy can reach 10% and more in regions of phase space that are not dominated by top-antitop production. As a consequence, on-shell calculations should only be trusted to this level of accuracy.
Articolo in rivista - Articolo scientifico
NLO Computations; QCD Phenomenology;
English
2020
2020
11
69
open
Denner, A., Pelliccioli, G. (2020). NLO QCD corrections to off-shell t t ¯ W ± production at the LHC. JOURNAL OF HIGH ENERGY PHYSICS, 2020(11) [10.1007/JHEP11(2020)069].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/517620
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