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ATLAS calorimetry: Trigger, simulation and jet calibration

The Pre-Processor system of the ATLAS Level-1 Calorimeter Trigger performs complex processing of analog trigger tower signals from electromagnetic and hadronic calorimeters. The main processing block of the Pre-Processor System is the Multi-Chip Module (MCM). The first part of this thesis describes...

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Autor principal: Weber, Pavel
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:http://cds.cern.ch/record/2284233
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author Weber, Pavel
author_facet Weber, Pavel
author_sort Weber, Pavel
collection CERN
description The Pre-Processor system of the ATLAS Level-1 Calorimeter Trigger performs complex processing of analog trigger tower signals from electromagnetic and hadronic calorimeters. The main processing block of the Pre-Processor System is the Multi-Chip Module (MCM). The first part of this thesis describes MCM quality assurance tests that have been developed, their use in the MCM large scale production and the results that have been obtained. In the second part of the thesis a validation of a shower parametrisation model for the ATLAS fast simulation package ATLFAST based on QCD dijet events is performed. A detailed comparison of jet response and jet energy resolution between the fast and the full simulation is presented. The uniformity of the calorimeter response has a significant impact on the accuracy of the jet energy measurement. A study of the calorimeter intercalibration using QCD dijet events is presented in the last part of the thesis. The intercalibration study is performed in azimuth angle phi and in pseudorapidity eta. The performance of the calibration methods including possible systematic and statistical effects is described.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling oai-inspirehep.net-7815282019-09-30T06:29:59Zhttp://cds.cern.ch/record/2284233engWeber, PavelATLAS calorimetry: Trigger, simulation and jet calibrationDetectors and Experimental TechniquesThe Pre-Processor system of the ATLAS Level-1 Calorimeter Trigger performs complex processing of analog trigger tower signals from electromagnetic and hadronic calorimeters. The main processing block of the Pre-Processor System is the Multi-Chip Module (MCM). The first part of this thesis describes MCM quality assurance tests that have been developed, their use in the MCM large scale production and the results that have been obtained. In the second part of the thesis a validation of a shower parametrisation model for the ATLAS fast simulation package ATLFAST based on QCD dijet events is performed. A detailed comparison of jet response and jet energy resolution between the fast and the full simulation is presented. The uniformity of the calorimeter response has a significant impact on the accuracy of the jet energy measurement. A study of the calorimeter intercalibration using QCD dijet events is presented in the last part of the thesis. The intercalibration study is performed in azimuth angle phi and in pseudorapidity eta. The performance of the calibration methods including possible systematic and statistical effects is described.CERN-THESIS-2008-253oai:inspirehep.net:7815282008
spellingShingle Detectors and Experimental Techniques
Weber, Pavel
ATLAS calorimetry: Trigger, simulation and jet calibration
title ATLAS calorimetry: Trigger, simulation and jet calibration
title_full ATLAS calorimetry: Trigger, simulation and jet calibration
title_fullStr ATLAS calorimetry: Trigger, simulation and jet calibration
title_full_unstemmed ATLAS calorimetry: Trigger, simulation and jet calibration
title_short ATLAS calorimetry: Trigger, simulation and jet calibration
title_sort atlas calorimetry: trigger, simulation and jet calibration
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/2284233
work_keys_str_mv AT weberpavel atlascalorimetrytriggersimulationandjetcalibration