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Next-to-leading non-global logarithms in QCD

Non-global logarithms arise from the sensitivity of collider observables to soft radiation in limited angular regions of phase space. Their resummation to next-to-leading logarithmic (NLL) order has been a long standing problem and its solution is relevant in the context of precision all-order calcu...

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Detalles Bibliográficos
Autores principales: Banfi, Andrea, Dreyer, Frédéric A., Monni, Pier Francesco
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP10(2021)006
http://cds.cern.ch/record/2764482
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author Banfi, Andrea
Dreyer, Frédéric A.
Monni, Pier Francesco
author_facet Banfi, Andrea
Dreyer, Frédéric A.
Monni, Pier Francesco
author_sort Banfi, Andrea
collection CERN
description Non-global logarithms arise from the sensitivity of collider observables to soft radiation in limited angular regions of phase space. Their resummation to next-to-leading logarithmic (NLL) order has been a long standing problem and its solution is relevant in the context of precision all-order calculations in a wide variety of collider processes and observables. In this article, we consider observables sensitive only to soft radiation, characterised by the absence of Sudakov double logarithms, and we derive a set of integro-differential equations that describes the resummation of NLL soft corrections in the planar, large-N$_{c}$ limit. The resulting set of evolution equations is derived in dimensional regularisation and we additionally provide a formulation that is manifestly finite in four space-time dimensions. The latter is suitable for a numerical integration and can be generalised to treat other infrared-safe observables sensitive solely to soft wide-angle radiation. We use the developed formalism to carry out a fixed-order calculation to $ \mathcal{O}\left({\alpha}_s^2\right) $ in full colour for both the transverse energy and energy distribution in the interjet region between two cone jets in e$^{+}$e$^{−}$ collisions. We find that the expansion of the resummed cross section correctly reproduces the logarithmic structure of the full QCD result.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-27644822023-10-04T06:54:10Zdoi:10.1007/JHEP10(2021)006http://cds.cern.ch/record/2764482engBanfi, AndreaDreyer, Frédéric A.Monni, Pier FrancescoNext-to-leading non-global logarithms in QCDhep-phParticle Physics - PhenomenologyNon-global logarithms arise from the sensitivity of collider observables to soft radiation in limited angular regions of phase space. Their resummation to next-to-leading logarithmic (NLL) order has been a long standing problem and its solution is relevant in the context of precision all-order calculations in a wide variety of collider processes and observables. In this article, we consider observables sensitive only to soft radiation, characterised by the absence of Sudakov double logarithms, and we derive a set of integro-differential equations that describes the resummation of NLL soft corrections in the planar, large-N$_{c}$ limit. The resulting set of evolution equations is derived in dimensional regularisation and we additionally provide a formulation that is manifestly finite in four space-time dimensions. The latter is suitable for a numerical integration and can be generalised to treat other infrared-safe observables sensitive solely to soft wide-angle radiation. We use the developed formalism to carry out a fixed-order calculation to $ \mathcal{O}\left({\alpha}_s^2\right) $ in full colour for both the transverse energy and energy distribution in the interjet region between two cone jets in e$^{+}$e$^{−}$ collisions. We find that the expansion of the resummed cross section correctly reproduces the logarithmic structure of the full QCD result.Non-global logarithms arise from the sensitivity of collider observables to soft radiation in limited angular regions of phase space. Their resummation to next-to-leading logarithmic (NLL) order has been a long standing problem and its solution is relevant in the context of precision all-order calculations in a wide variety of collider processes and observables. In this article, we consider observables sensitive only to soft radiation, characterised by the absence of Sudakov double logarithms, and we derive a set of integro-differential equations that describes the resummation of NLL soft corrections in the planar, large-$N_c$ limit. The resulting set of evolution equations is derived in dimensional regularisation and we additionally provide a formulation that is manifestly finite in four space-time dimensions. The latter is suitable for a numerical integration and can be generalised to treat other infrared-safe observables sensitive solely to soft wide-angle radiation. We use the developed formalism to carry out a fixed-order calculation to ${\cal O}(\alpha_s^2)$ in full colour for both the transverse energy and energy distribution in the interjet region between two cone jets in $e^+e^-$ collisions. We find that the expansion of the resummed cross section correctly reproduces the logarithmic structure of the full QCD result.arXiv:2104.06416oai:cds.cern.ch:27644822021-04-13
spellingShingle hep-ph
Particle Physics - Phenomenology
Banfi, Andrea
Dreyer, Frédéric A.
Monni, Pier Francesco
Next-to-leading non-global logarithms in QCD
title Next-to-leading non-global logarithms in QCD
title_full Next-to-leading non-global logarithms in QCD
title_fullStr Next-to-leading non-global logarithms in QCD
title_full_unstemmed Next-to-leading non-global logarithms in QCD
title_short Next-to-leading non-global logarithms in QCD
title_sort next-to-leading non-global logarithms in qcd
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP10(2021)006
http://cds.cern.ch/record/2764482
work_keys_str_mv AT banfiandrea nexttoleadingnongloballogarithmsinqcd
AT dreyerfrederica nexttoleadingnongloballogarithmsinqcd
AT monnipierfrancesco nexttoleadingnongloballogarithmsinqcd