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Large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization

The off-diagonal parton-scattering channels g + γ$^{*}$ and q + ϕ$^{*}$ in deep-inelastic scattering are power-suppressed near threshold x → 1. We address the next-to-leading power (NLP) resummation of large double logarithms of 1 − x to all orders in the strong coupling, which are present even in t...

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Autores principales: Beneke, Martin, Garny, Mathias, Jaskiewicz, Sebastian, Szafron, Robert, Vernazza, Leonardo, Wang, Jian
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP10(2020)196
http://cds.cern.ch/record/2728001
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author Beneke, Martin
Garny, Mathias
Jaskiewicz, Sebastian
Szafron, Robert
Vernazza, Leonardo
Wang, Jian
author_facet Beneke, Martin
Garny, Mathias
Jaskiewicz, Sebastian
Szafron, Robert
Vernazza, Leonardo
Wang, Jian
author_sort Beneke, Martin
collection CERN
description The off-diagonal parton-scattering channels g + γ$^{*}$ and q + ϕ$^{*}$ in deep-inelastic scattering are power-suppressed near threshold x → 1. We address the next-to-leading power (NLP) resummation of large double logarithms of 1 − x to all orders in the strong coupling, which are present even in the off-diagonal DGLAP splitting kernels. The appearance of divergent convolutions prevents the application of factorization methods known from leading power resummation. Employing d-dimensional consistency relations from requiring 1/ϵ pole cancellations in dimensional regularization between momentum regions, we show that the resummation of the off-diagonal parton-scattering channels at the leading logarithmic order can be bootstrapped from the recently conjectured exponentiation of NLP soft-quark Sudakov logarithms. In particular, we derive a result for the DGLAP kernel in terms of the series of Bernoulli numbers found previously by Vogt directly from algebraic all-order expressions. We identify the off-diagonal DGLAP splitting functions and soft-quark Sudakov logarithms as inherent two-scale quantities in the large-x limit. We use a refactorization of these scales and renormalization group methods inspired by soft-collinear effective theory to derive the conjectured soft-quark Sudakov exponentiation formula.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-27280012023-10-04T06:49:32Zdoi:10.1007/JHEP10(2020)196http://cds.cern.ch/record/2728001engBeneke, MartinGarny, MathiasJaskiewicz, SebastianSzafron, RobertVernazza, LeonardoWang, JianLarge-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorizationhep-phParticle Physics - PhenomenologyThe off-diagonal parton-scattering channels g + γ$^{*}$ and q + ϕ$^{*}$ in deep-inelastic scattering are power-suppressed near threshold x → 1. We address the next-to-leading power (NLP) resummation of large double logarithms of 1 − x to all orders in the strong coupling, which are present even in the off-diagonal DGLAP splitting kernels. The appearance of divergent convolutions prevents the application of factorization methods known from leading power resummation. Employing d-dimensional consistency relations from requiring 1/ϵ pole cancellations in dimensional regularization between momentum regions, we show that the resummation of the off-diagonal parton-scattering channels at the leading logarithmic order can be bootstrapped from the recently conjectured exponentiation of NLP soft-quark Sudakov logarithms. In particular, we derive a result for the DGLAP kernel in terms of the series of Bernoulli numbers found previously by Vogt directly from algebraic all-order expressions. We identify the off-diagonal DGLAP splitting functions and soft-quark Sudakov logarithms as inherent two-scale quantities in the large-x limit. We use a refactorization of these scales and renormalization group methods inspired by soft-collinear effective theory to derive the conjectured soft-quark Sudakov exponentiation formula.The off-diagonal parton-scattering channels $g+\gamma^*$ and $q+\phi^*$ in deep-inelastic scattering are power-suppressed near threshold $x\to 1$. We address the next-to-leading power (NLP) resummation of large double logarithms of $1-x$ to all orders in the strong coupling, which are present even in the off-diagonal DGLAP splitting kernels. The appearance of divergent convolutions prevents the application of factorization methods known from leading power resummation. Employing $d$-dimensional consistency relations from requiring $1/\epsilon$ pole cancellations in dimensional regularization between momentum regions, we show that the resummation of the off-diagonal parton-scattering channels at the leading logarithmic order can be bootstrapped from the recently conjectured exponentiation of NLP soft-quark Sudakov logarithms. In particular, we derive a result for the DGLAP kernel in terms of the series of Bernoulli numbers found previously by Vogt directly from algebraic all-order expressions. We identify the off-diagonal DGLAP splitting functions and soft-quark Sudakov logarithms as inherent two-scale quantities in the large-$x$ limit. We use a refactorization of these scales and renormalization group methods inspired by soft-collinear effective theory to derive the conjectured soft-quark Sudakov exponentiation formula.arXiv:2008.04943TUM-HEP-1270/20CERN-TH-2020-135oai:cds.cern.ch:27280012020-08-11
spellingShingle hep-ph
Particle Physics - Phenomenology
Beneke, Martin
Garny, Mathias
Jaskiewicz, Sebastian
Szafron, Robert
Vernazza, Leonardo
Wang, Jian
Large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization
title Large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization
title_full Large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization
title_fullStr Large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization
title_full_unstemmed Large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization
title_short Large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization
title_sort large-x resummation of off-diagonal deep-inelastic parton scattering from d-dimensional refactorization
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP10(2020)196
http://cds.cern.ch/record/2728001
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AT garnymathias largexresummationofoffdiagonaldeepinelasticpartonscatteringfromddimensionalrefactorization
AT jaskiewiczsebastian largexresummationofoffdiagonaldeepinelasticpartonscatteringfromddimensionalrefactorization
AT szafronrobert largexresummationofoffdiagonaldeepinelasticpartonscatteringfromddimensionalrefactorization
AT vernazzaleonardo largexresummationofoffdiagonaldeepinelasticpartonscatteringfromddimensionalrefactorization
AT wangjian largexresummationofoffdiagonaldeepinelasticpartonscatteringfromddimensionalrefactorization