Two-loop mixed QCD-electroweak amplitudes for $Z+$jet production at the LHC: bosonic corrections

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Autori principali: Bargiela, Piotr, Caola, Fabrizio, Chawdhry, Herschel, Liu, Xiao
Natura: Preprint
Pubblicazione: 2023
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author Bargiela, Piotr
Caola, Fabrizio
Chawdhry, Herschel
Liu, Xiao
author_facet Bargiela, Piotr
Caola, Fabrizio
Chawdhry, Herschel
Liu, Xiao
contents We present a calculation of the bosonic contribution to the two-loop mixed QCD-electroweak scattering amplitudes for $Z$-boson production in association with one hard jet at hadron colliders. We employ a method to calculate amplitudes in the 't Hooft-Veltman scheme that reduces the amount of spurious non-physical information needed at intermediate stages of the computation, to keep the complexity of the calculation under control. We compute all the relevant Feynman integrals numerically using the Auxiliary Mass Flow method. We evaluate the two-loop scattering amplitudes on a two-dimensional grid in the rapidity and transverse momentum of the $Z$ boson, which has been designed to yield a reliable numerical sampling of the boosted-$Z$ region. This result provides an important building block for improving the theoretical modelling of a key background for monojet searches at the LHC.
format Preprint
id arxiv_https___arxiv_org_abs_2312_14145
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Two-loop mixed QCD-electroweak amplitudes for $Z+$jet production at the LHC: bosonic corrections
Bargiela, Piotr
Caola, Fabrizio
Chawdhry, Herschel
Liu, Xiao
High Energy Physics - Phenomenology
We present a calculation of the bosonic contribution to the two-loop mixed QCD-electroweak scattering amplitudes for $Z$-boson production in association with one hard jet at hadron colliders. We employ a method to calculate amplitudes in the 't Hooft-Veltman scheme that reduces the amount of spurious non-physical information needed at intermediate stages of the computation, to keep the complexity of the calculation under control. We compute all the relevant Feynman integrals numerically using the Auxiliary Mass Flow method. We evaluate the two-loop scattering amplitudes on a two-dimensional grid in the rapidity and transverse momentum of the $Z$ boson, which has been designed to yield a reliable numerical sampling of the boosted-$Z$ region. This result provides an important building block for improving the theoretical modelling of a key background for monojet searches at the LHC.
title Two-loop mixed QCD-electroweak amplitudes for $Z+$jet production at the LHC: bosonic corrections
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2312.14145