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Exploitation of Jet Properties for Energy Scale Corrections for the CMS Calorimeters

Jets form important event signatures in proton-proton collisions at the Large Hadron Collider (LHC) and the precise measurement of their energy is a crucial premise for a manifold of physics studies. Jets, which are reconstructed exclusively from calorimeter information, have been widely used within...

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Detalles Bibliográficos
Autor principal: Kirschenmann, Henning
Lenguaje:eng
Publicado: Institut fur Experimentalphysik 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1340542
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author Kirschenmann, Henning
author_facet Kirschenmann, Henning
author_sort Kirschenmann, Henning
collection CERN
description Jets form important event signatures in proton-proton collisions at the Large Hadron Collider (LHC) and the precise measurement of their energy is a crucial premise for a manifold of physics studies. Jets, which are reconstructed exclusively from calorimeter information, have been widely used within the CMS collaboration3. However, the response of the calorimeters to incident particles depends heavily on their energy. In addition, it has been observed at previous experiments that the charged particle multiplicity and the radial distribution of constitutents dier for jets induced by light quarks or by gluons. In conjunction with the non-linearity of the CMS calorimeters, this contributes to a mean energy response deviating from unity for calorimeter jets, depending on the jet- avour. This thesis describes a jet-energy correction to be applied in addition to the default corrections within the CMS collaboration. This correction aims at decreasing the avour dependence of the jet-energy response and improving the energy resolution. As many dierent eects contribute to the observed jet-energy response, a set of observables are introduced and corrections based on these observables are tested with respect to the above aims. A jet-width variable, which is dened from energy measured in the calorimeter, shows the best performance: A correction based on this observable improves the energy resolution by up to 20% at high transverse momenta in the central detector region and decreases the avour dependence of the jet-energy response by a factor of two. A parametrisation of the correction is both derived from and validated on simulated data. First results from experimental data, to which the correction has been applied, are presented. The proposed jet-width correction shows a promising level of performance.
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spelling cern-13405422019-09-30T06:29:59Zhttp://cds.cern.ch/record/1340542engKirschenmann, HenningExploitation of Jet Properties for Energy Scale Corrections for the CMS CalorimetersDetectors and Experimental TechniquesParticle physics - ExperimentJets form important event signatures in proton-proton collisions at the Large Hadron Collider (LHC) and the precise measurement of their energy is a crucial premise for a manifold of physics studies. Jets, which are reconstructed exclusively from calorimeter information, have been widely used within the CMS collaboration3. However, the response of the calorimeters to incident particles depends heavily on their energy. In addition, it has been observed at previous experiments that the charged particle multiplicity and the radial distribution of constitutents dier for jets induced by light quarks or by gluons. In conjunction with the non-linearity of the CMS calorimeters, this contributes to a mean energy response deviating from unity for calorimeter jets, depending on the jet- avour. This thesis describes a jet-energy correction to be applied in addition to the default corrections within the CMS collaboration. This correction aims at decreasing the avour dependence of the jet-energy response and improving the energy resolution. As many dierent eects contribute to the observed jet-energy response, a set of observables are introduced and corrections based on these observables are tested with respect to the above aims. A jet-width variable, which is dened from energy measured in the calorimeter, shows the best performance: A correction based on this observable improves the energy resolution by up to 20% at high transverse momenta in the central detector region and decreases the avour dependence of the jet-energy response by a factor of two. A parametrisation of the correction is both derived from and validated on simulated data. First results from experimental data, to which the correction has been applied, are presented. The proposed jet-width correction shows a promising level of performance.Institut fur ExperimentalphysikDESY-THESIS-2011-006CERN-THESIS-2010-293CMS-TS-2011-002oai:cds.cern.ch:13405422010
spellingShingle Detectors and Experimental Techniques
Particle physics - Experiment
Kirschenmann, Henning
Exploitation of Jet Properties for Energy Scale Corrections for the CMS Calorimeters
title Exploitation of Jet Properties for Energy Scale Corrections for the CMS Calorimeters
title_full Exploitation of Jet Properties for Energy Scale Corrections for the CMS Calorimeters
title_fullStr Exploitation of Jet Properties for Energy Scale Corrections for the CMS Calorimeters
title_full_unstemmed Exploitation of Jet Properties for Energy Scale Corrections for the CMS Calorimeters
title_short Exploitation of Jet Properties for Energy Scale Corrections for the CMS Calorimeters
title_sort exploitation of jet properties for energy scale corrections for the cms calorimeters
topic Detectors and Experimental Techniques
Particle physics - Experiment
url http://cds.cern.ch/record/1340542
work_keys_str_mv AT kirschenmannhenning exploitationofjetpropertiesforenergyscalecorrectionsforthecmscalorimeters