In the context of infrared subtraction algorithms beyond next-to-leading order, it becomes necessary to consider multiple infrared limits of scattering amplitudes, in which several particles become soft or collinear in a strongly-ordered sequence. We study these limits from the point of view of infrared factorisation, and we provide general definitions of strongly-ordered soft and collinear kernels in terms of gauge-invariant operator matrix elements. With these definitions in hand, it is possible to construct local subtraction counterterms for strongly-ordered configurations. Because of their factorised structure, these counterterms cancel infrared poles of real-virtual contributions by construction. We test these ideas at tree level for multiple emissions, and at one loop for single and double emissions, contributing to NNLO and N3LO distributions, respectively.

Strongly-ordered infrared counterterms from factorisation

Lorenzo Magnea;Calum Milloy;Chiara Signorile-Signorile;Paolo Torrielli
2024-01-01

Abstract

In the context of infrared subtraction algorithms beyond next-to-leading order, it becomes necessary to consider multiple infrared limits of scattering amplitudes, in which several particles become soft or collinear in a strongly-ordered sequence. We study these limits from the point of view of infrared factorisation, and we provide general definitions of strongly-ordered soft and collinear kernels in terms of gauge-invariant operator matrix elements. With these definitions in hand, it is possible to construct local subtraction counterterms for strongly-ordered configurations. Because of their factorised structure, these counterterms cancel infrared poles of real-virtual contributions by construction. We test these ideas at tree level for multiple emissions, and at one loop for single and double emissions, contributing to NNLO and N3LO distributions, respectively.
2024
Inglese
Esperti anonimi
1
1
1
http://arxiv.org/abs/2403.11975v1
36 pages + appendices
High Energy Physics - Phenomenology; High Energy Physics - Phenomenology
   Compagnia di San Paolo - Bando ex-post - Anno 2020 - "Automated subtraction of DiVergences..." - Cda 21/12/2021
   ADVANCE-QCD
   COMPAGNIA DI SAN PAOLO
   TORRIELLI P.

   PRIN 2022 - COD. 2022BCXSW9 - Precision jet physics at lepton colliders - Finanziamento dell’Unione Europea – NextGenerationEU – missione 4, componente 2, investimento 1.1.
   Ministero dell'Università e della Ricerca
   TORRIELLI P.
4 – prodotto già presente in altro archivio Open Access (arXiv, REPEC…)
262
4
Lorenzo Magnea; Calum Milloy; Chiara Signorile-Signorile; Paolo Torrielli
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/2318/2002030
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