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Small-x Resummation and HERA Structure Function Data

We apply our systematic NLO small x resummation of singlet splitting functions to the scaling violations of structure functions and compare the results with data. We develop various theoretical tools which are needed in order to relate resummed parton distributions to measurable structure functions,...

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Detalles Bibliográficos
Autores principales: Altarelli, Guido, Ball, Richard D., Forte, Stefano
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0550-3213(01)00023-2
http://cds.cern.ch/record/478025
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author Altarelli, Guido
Ball, Richard D.
Forte, Stefano
author_facet Altarelli, Guido
Ball, Richard D.
Forte, Stefano
author_sort Altarelli, Guido
collection CERN
description We apply our systematic NLO small x resummation of singlet splitting functions to the scaling violations of structure functions and compare the results with data. We develop various theoretical tools which are needed in order to relate resummed parton distributions to measurable structure functions, and we present results from a variety of fits to HERA data for the structure functions F_2 and F_L using the resummation. The behaviour of the singlet splitting functions at small x and fixed Q^2 is effectively parametrized as x^{-lambda}. We find that, for lambda small or negative, the resummed description of scaling violations may be phenomenologically as good as or even better than the standard next-to-leading order treatment. However, the best fit gluon density and value of alpha_s can be significantly modified by the resummation.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling cern-4780252023-03-14T20:18:01Zdoi:10.1016/S0550-3213(01)00023-2http://cds.cern.ch/record/478025engAltarelli, GuidoBall, Richard D.Forte, StefanoSmall-x Resummation and HERA Structure Function DataParticle Physics - PhenomenologyWe apply our systematic NLO small x resummation of singlet splitting functions to the scaling violations of structure functions and compare the results with data. We develop various theoretical tools which are needed in order to relate resummed parton distributions to measurable structure functions, and we present results from a variety of fits to HERA data for the structure functions F_2 and F_L using the resummation. The behaviour of the singlet splitting functions at small x and fixed Q^2 is effectively parametrized as x^{-lambda}. We find that, for lambda small or negative, the resummed description of scaling violations may be phenomenologically as good as or even better than the standard next-to-leading order treatment. However, the best fit gluon density and value of alpha_s can be significantly modified by the resummation.We apply our systematic NLO small x resummation of singlet splitting functions to the scaling violations of structure functions and compare the results with data. We develop various theoretical tools which are needed in order to relate resummed parton distributions to measurable structure functions, and we present results from a variety of fits to HERA data for the structure functions F_2 and F_L using the resummation. The behaviour of the singlet splitting functions at small x and fixed Q^2 is effectively parametrized as x^{-lambda}. We find that, for lambda small or negative, the resummed description of scaling violations may be phenomenologically as good as or even better than the standard next-to-leading order treatment. However, the best fit gluon density and value of alpha_s can be significantly modified by the resummation.We apply our systematic NLO small x resummation of singlet splitting functions to the scaling violations of structure functions and compare the results with data. We develop various theoretical tools which are needed in order to relate resummed parton distributions to measurable structure functions, and we present results from a variety of fits to HERA data for the structure functions F_2 and F_L using the resummation. The behaviour of the singlet splitting functions at small x and fixed Q^2 is effectively parametrized as x^{-lambda}. We find that, for lambda small or negative, the resummed description of scaling violations may be phenomenologically as good as or even better than the standard next-to-leading order treatment. However, the best fit gluon density and value of alpha_s can be significantly modified by the resummation.We apply our systematic NLO small x resummation of singlet splitting functions to the scaling violations of structure functions and compare the results with data. We develop various theoretical tools which are needed in order to relate resummed parton distributions to measurable structure functions, and we present results from a variety of fits to HERA data for the structure functions F 2 and F L using the resummation. The behaviour of the singlet splitting functions at small x and fixed Q 2 is effectively parametrized as x −λ . We find that, for λ small or negative, the resummed description of scaling violations may be phenomenologically as good as or even better than the standard next-to-leading order treatment. However, the best fit gluon density and value of α s can be significantly modified by the resummation.hep-ph/0011270CERN-TH-2000-252EDINBURGH-2000-24RM3-TH-2000-13CERN-TH-2000-252EDINBURGH-2000-24RM-3-TH-2000-13oai:cds.cern.ch:4780252000-11-21
spellingShingle Particle Physics - Phenomenology
Altarelli, Guido
Ball, Richard D.
Forte, Stefano
Small-x Resummation and HERA Structure Function Data
title Small-x Resummation and HERA Structure Function Data
title_full Small-x Resummation and HERA Structure Function Data
title_fullStr Small-x Resummation and HERA Structure Function Data
title_full_unstemmed Small-x Resummation and HERA Structure Function Data
title_short Small-x Resummation and HERA Structure Function Data
title_sort small-x resummation and hera structure function data
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/S0550-3213(01)00023-2
http://cds.cern.ch/record/478025
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AT ballrichardd smallxresummationandherastructurefunctiondata
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