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W/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERN

One of the dominant backgrounds in new physics searches at the Large Hadron Collider comes from the leptonic decays of Standard Model W and Z bosons recoiling off jets associated with the underlying event. The ratio of the W+jets and Z+jets cross sections, Rn, is predicted with high precision due to...

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Autor principal: Pearce, James Douglas
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1488932
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author Pearce, James Douglas
author_facet Pearce, James Douglas
author_sort Pearce, James Douglas
collection CERN
description One of the dominant backgrounds in new physics searches at the Large Hadron Collider comes from the leptonic decays of Standard Model W and Z bosons recoiling off jets associated with the underlying event. The ratio of the W+jets and Z+jets cross sections, Rn, is predicted with high precision due to the similar masses and production mechanisms of the W and Z bosons. Any significant departures of Rn from predicted values would be an indication of new physics. This thesis studies a strategy to enhance the sensitivity of Rn to a specific type of signal. A measurement of the ratio Rn is presented, and its sensitivity to pair production of top quarks and leptoquarks is studied. Using a set of topology-discriminating variables, based upon calorimeter topoclusters, the sensitivity of Rn to top quark and leptoquark signals is enhanced using multivariate analysis techniques.
id cern-1488932
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
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spelling cern-14889322019-09-30T06:29:59Zhttp://cds.cern.ch/record/1488932engPearce, James DouglasW/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERNParticle Physics - ExperimentOne of the dominant backgrounds in new physics searches at the Large Hadron Collider comes from the leptonic decays of Standard Model W and Z bosons recoiling off jets associated with the underlying event. The ratio of the W+jets and Z+jets cross sections, Rn, is predicted with high precision due to the similar masses and production mechanisms of the W and Z bosons. Any significant departures of Rn from predicted values would be an indication of new physics. This thesis studies a strategy to enhance the sensitivity of Rn to a specific type of signal. A measurement of the ratio Rn is presented, and its sensitivity to pair production of top quarks and leptoquarks is studied. Using a set of topology-discriminating variables, based upon calorimeter topoclusters, the sensitivity of Rn to top quark and leptoquark signals is enhanced using multivariate analysis techniques.CERN-THESIS-2011-261oai:cds.cern.ch:14889322012-10-22T09:12:35Z
spellingShingle Particle Physics - Experiment
Pearce, James Douglas
W/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERN
title W/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERN
title_full W/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERN
title_fullStr W/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERN
title_full_unstemmed W/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERN
title_short W/Z+Jets Production Cross Section Ratio as a New Physics Search with the ATLAS Detector at CERN
title_sort w/z+jets production cross section ratio as a new physics search with the atlas detector at cern
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1488932
work_keys_str_mv AT pearcejamesdouglas wzjetsproductioncrosssectionratioasanewphysicssearchwiththeatlasdetectoratcern