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Hard Scattering Based Luminosity Measurement at Hadron Colliders

A strategy to determine the luminosity at Hadron Colliders is discussed using the simultaneous W-boson and Z-boson event counts. The emphasis of the study will be on the uncertainty induced by the parton density functions. Understanding this source of uncertainties is crucial for a reliable luminosi...

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Detalles Bibliográficos
Autores principales: Giele, Walter T., Keller, Stephane A.
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:http://cds.cern.ch/record/494129
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author Giele, Walter T.
Keller, Stephane A.
author_facet Giele, Walter T.
Keller, Stephane A.
author_sort Giele, Walter T.
collection CERN
description A strategy to determine the luminosity at Hadron Colliders is discussed using the simultaneous W-boson and Z-boson event counts. The emphasis of the study will be on the uncertainty induced by the parton density functions. Understanding this source of uncertainties is crucial for a reliable luminosity determination using the W-boson and Z-boson events. As an example we will use the D0 run 1 results to extract the luminosity using the vector boson events and compare the result with the traditional method. Subsequently we will look at the implications for the top cross section uncertainties using the extracted luminosity.
id cern-494129
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2001
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spelling cern-4941292023-03-14T18:09:48Zhttp://cds.cern.ch/record/494129engGiele, Walter T.Keller, Stephane A.Hard Scattering Based Luminosity Measurement at Hadron CollidersParticle Physics - PhenomenologyA strategy to determine the luminosity at Hadron Colliders is discussed using the simultaneous W-boson and Z-boson event counts. The emphasis of the study will be on the uncertainty induced by the parton density functions. Understanding this source of uncertainties is crucial for a reliable luminosity determination using the W-boson and Z-boson events. As an example we will use the D0 run 1 results to extract the luminosity using the vector boson events and compare the result with the traditional method. Subsequently we will look at the implications for the top cross section uncertainties using the extracted luminosity.A strategy to determine the luminosity at Hadron Colliders is discussed using the simultaneous W-boson and Z-boson event counts. The emphasis of the study will be on the uncertainty induced by the parton density functions. Understanding this source of uncertainties is crucial for a reliable luminosity determination using the W-boson and Z-boson events. As an example we will use the D0 run 1 results to extract the luminosity using the vector boson events and compare the result with the traditional method. Subsequently we will look at the implications for the top cross section uncertainties using the extracted luminosity.hep-ph/0104053FERMILAB-PUB-01-497-Toai:cds.cern.ch:4941292001-04-04
spellingShingle Particle Physics - Phenomenology
Giele, Walter T.
Keller, Stephane A.
Hard Scattering Based Luminosity Measurement at Hadron Colliders
title Hard Scattering Based Luminosity Measurement at Hadron Colliders
title_full Hard Scattering Based Luminosity Measurement at Hadron Colliders
title_fullStr Hard Scattering Based Luminosity Measurement at Hadron Colliders
title_full_unstemmed Hard Scattering Based Luminosity Measurement at Hadron Colliders
title_short Hard Scattering Based Luminosity Measurement at Hadron Colliders
title_sort hard scattering based luminosity measurement at hadron colliders
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/494129
work_keys_str_mv AT gielewaltert hardscatteringbasedluminositymeasurementathadroncolliders
AT kellerstephanea hardscatteringbasedluminositymeasurementathadroncolliders