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A (Slightly Less Brutal) Method for Numerically Evaluating Structure Functions

A fast numerical algorithm for the evolution of parton distributions in x space is described. The method is close in spirit to `brute' force techniques. The necessary integrals are performed by summing the approximate contributions from small steps of the integration region. Because it is a num...

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Autor principal: Fasching, D
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:http://cds.cern.ch/record/312182
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author Fasching, D
author_facet Fasching, D
author_sort Fasching, D
collection CERN
description A fast numerical algorithm for the evolution of parton distributions in x space is described. The method is close in spirit to `brute' force techniques. The necessary integrals are performed by summing the approximate contributions from small steps of the integration region. Because it is a numerical evaluation it shares the advantage with brute force numerical integration that there are no restrictions placed on the functional form of the distributions to be evolved. However, an improvement in the approximation technique results in a significant reduction in the number of integration steps and a savings in time on the order of three hundred fifty. The method has been implemented for the structure functions F_2 and g_1 at next-to-leading order.
id cern-312182
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
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spelling cern-3121822019-09-30T06:29:59Zhttp://cds.cern.ch/record/312182engFasching, DA (Slightly Less Brutal) Method for Numerically Evaluating Structure FunctionsParticle Physics - PhenomenologyA fast numerical algorithm for the evolution of parton distributions in x space is described. The method is close in spirit to `brute' force techniques. The necessary integrals are performed by summing the approximate contributions from small steps of the integration region. Because it is a numerical evaluation it shares the advantage with brute force numerical integration that there are no restrictions placed on the functional form of the distributions to be evolved. However, an improvement in the approximation technique results in a significant reduction in the number of integration steps and a savings in time on the order of three hundred fifty. The method has been implemented for the structure functions F_2 and g_1 at next-to-leading order.hep-ph/9610261oai:cds.cern.ch:3121821996-10-06
spellingShingle Particle Physics - Phenomenology
Fasching, D
A (Slightly Less Brutal) Method for Numerically Evaluating Structure Functions
title A (Slightly Less Brutal) Method for Numerically Evaluating Structure Functions
title_full A (Slightly Less Brutal) Method for Numerically Evaluating Structure Functions
title_fullStr A (Slightly Less Brutal) Method for Numerically Evaluating Structure Functions
title_full_unstemmed A (Slightly Less Brutal) Method for Numerically Evaluating Structure Functions
title_short A (Slightly Less Brutal) Method for Numerically Evaluating Structure Functions
title_sort (slightly less brutal) method for numerically evaluating structure functions
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/312182
work_keys_str_mv AT faschingd aslightlylessbrutalmethodfornumericallyevaluatingstructurefunctions
AT faschingd slightlylessbrutalmethodfornumericallyevaluatingstructurefunctions