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Main Authors: Banfi, Andrea, El-Menoufi, Basem Kamal
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2511.17708
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author Banfi, Andrea
El-Menoufi, Basem Kamal
author_facet Banfi, Andrea
El-Menoufi, Basem Kamal
contents Leading hadronisation corrections to two-jet global event shapes amount to a shift in the corresponding perturbative distributions. It has been recently established that this shift depends significantly on the value of the considered event shape. These analyses consider perturbative configurations with only three partons emitting an ultra-soft non-perturbative gluon. These are dominant in the three-jet region. However, multiple soft and/or collinear emissions need to be considered to accurately describe event shape distributions near their Sudakov peak. In this region, non-perturbative shifts are usually computed by considering only two hard emitters. In this paper, we find that this approximation misses an important correction to the shift due to the emission of an additional soft wide-angle gluon. We then compute its contribution, and embed it in a general treatment for the shift that is valid in both the two-jet and three-jet regions.
format Preprint
id arxiv_https___arxiv_org_abs_2511_17708
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Characterising hadronisation across the phase space
Banfi, Andrea
El-Menoufi, Basem Kamal
High Energy Physics - Phenomenology
High Energy Physics - Theory
Leading hadronisation corrections to two-jet global event shapes amount to a shift in the corresponding perturbative distributions. It has been recently established that this shift depends significantly on the value of the considered event shape. These analyses consider perturbative configurations with only three partons emitting an ultra-soft non-perturbative gluon. These are dominant in the three-jet region. However, multiple soft and/or collinear emissions need to be considered to accurately describe event shape distributions near their Sudakov peak. In this region, non-perturbative shifts are usually computed by considering only two hard emitters. In this paper, we find that this approximation misses an important correction to the shift due to the emission of an additional soft wide-angle gluon. We then compute its contribution, and embed it in a general treatment for the shift that is valid in both the two-jet and three-jet regions.
title Characterising hadronisation across the phase space
topic High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2511.17708