We compute helicity amplitudes for the one-loop QCD corrections to top-quark pair production analytically in terms of a set of uniformly transcendental master integrals. We provide corrections up to O(ε2) in the dimensional regulator for the first time which are relevant at NNLO. Four independent pentagon integral topologies appear in the complete description of the colour structure for which we provide numerical solutions using canonical form differential equations and the method of generalised power series expansions. Analytic forms of the boundary values are obtained in all cases except one where we find a one-dimensional integral representation.

One-loop QCD helicity amplitudes for pp → ttj to O(ε**2)

Simon Badger
First
;
Matteo Becchetti;Ekta Ekta;Francesco Sarandrea
2022-01-01

Abstract

We compute helicity amplitudes for the one-loop QCD corrections to top-quark pair production analytically in terms of a set of uniformly transcendental master integrals. We provide corrections up to O(ε2) in the dimensional regulator for the first time which are relevant at NNLO. Four independent pentagon integral topologies appear in the complete description of the colour structure for which we provide numerical solutions using canonical form differential equations and the method of generalised power series expansions. Analytic forms of the boundary values are obtained in all cases except one where we find a one-dimensional integral representation.
2022
Inglese
Esperti anonimi
2022
6
N/A
N/A
37
https://arxiv.org/abs/2201.12188
Higher-Order Perturbative Calculations; Top Quark;
   BADGER Simon - Progetto ER-H2020 n. 772099 - "High precision multi-jet dynamics at the LHC" (CdD. 20/04/2020)
   JetDynamics
   EUROPEAN COMMISSION
   772099
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Simon Badger, Matteo Becchetti, Ekta Ekta, Robin Marzucca, Francesco Sarandrea
info:eu-repo/semantics/article
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1894885
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