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Alignment of the ATLAS Inner Detector Tracking System

In order to achieve the scientific goals, the alignment of the ATLAS Inner Detector tracking system requires the determination of its almost 36000 degrees of freedom (DoF) with high accuracy. Thus the demanded precision for the alignment of the silicon sensors is below 10 micrometers. The implementa...

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Autor principal: Wang, J
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1279082
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author Wang, J
author_facet Wang, J
author_sort Wang, J
collection CERN
description In order to achieve the scientific goals, the alignment of the ATLAS Inner Detector tracking system requires the determination of its almost 36000 degrees of freedom (DoF) with high accuracy. Thus the demanded precision for the alignment of the silicon sensors is below 10 micrometers. The implementation of the track based alignment within the ATLAS software framework unifies different alignment approaches and allows the alignment of all tracking subsystems together. Primary vertex and beam spot constraints have also been implemented. As alignment algorithms are based on minimization of the track‐hit residuals, one needs to solve a linear system with large number of DoF. The solving involves the inversion or diagonalization of a large matrix that may be dense. The alignment jobs are executed at the CERN Analysis Facility, and also are moving to Grid. The event processing is run in parallel in many jobs. The output matrices from all jobs are added before solving. We will present the results of the alignment of the ATLAS Inner Detector using real data recorded during the LHC start up run in 2009 plus the recent 7 TeV data collected during 2010 run.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
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spelling cern-12790822019-09-30T06:29:59Zhttp://cds.cern.ch/record/1279082engWang, JAlignment of the ATLAS Inner Detector Tracking SystemDetectors and Experimental TechniquesIn order to achieve the scientific goals, the alignment of the ATLAS Inner Detector tracking system requires the determination of its almost 36000 degrees of freedom (DoF) with high accuracy. Thus the demanded precision for the alignment of the silicon sensors is below 10 micrometers. The implementation of the track based alignment within the ATLAS software framework unifies different alignment approaches and allows the alignment of all tracking subsystems together. Primary vertex and beam spot constraints have also been implemented. As alignment algorithms are based on minimization of the track‐hit residuals, one needs to solve a linear system with large number of DoF. The solving involves the inversion or diagonalization of a large matrix that may be dense. The alignment jobs are executed at the CERN Analysis Facility, and also are moving to Grid. The event processing is run in parallel in many jobs. The output matrices from all jobs are added before solving. We will present the results of the alignment of the ATLAS Inner Detector using real data recorded during the LHC start up run in 2009 plus the recent 7 TeV data collected during 2010 run.ATL-INDET-SLIDE-2010-195oai:cds.cern.ch:12790822010-07-20
spellingShingle Detectors and Experimental Techniques
Wang, J
Alignment of the ATLAS Inner Detector Tracking System
title Alignment of the ATLAS Inner Detector Tracking System
title_full Alignment of the ATLAS Inner Detector Tracking System
title_fullStr Alignment of the ATLAS Inner Detector Tracking System
title_full_unstemmed Alignment of the ATLAS Inner Detector Tracking System
title_short Alignment of the ATLAS Inner Detector Tracking System
title_sort alignment of the atlas inner detector tracking system
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1279082
work_keys_str_mv AT wangj alignmentoftheatlasinnerdetectortrackingsystem