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Novel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner Detector

ATLAS is a multipurpose experiment at the LHC proton-proton collider. Its physics goals require high resolution, unbiased measurement of all charged particle kinematic parameters. These critically depend on the layout and performance of the tracking system and the quality of its offline alignment. F...

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Autor principal: Estrada Pastor, Oscar
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2273580
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author Estrada Pastor, Oscar
author_facet Estrada Pastor, Oscar
author_sort Estrada Pastor, Oscar
collection CERN
description ATLAS is a multipurpose experiment at the LHC proton-proton collider. Its physics goals require high resolution, unbiased measurement of all charged particle kinematic parameters. These critically depend on the layout and performance of the tracking system and the quality of its offline alignment. For the LHC Run II, the system has been upgraded with the installation of a new pixel layer, the Insertable B-layer (IBL). Offline track alignment of the ATLAS tracking system has to deal with about 700,000 degrees of freedom (DoF) defining its geometrical parameters, representing a considerable numerical challenge in terms of both CPU time and precision. An outline of the track based alignment approach and its implementation within the ATLAS software will be presented. Special attention will be paid to describe the techniques allowing to pinpoint and eliminate track parameters biases due to alignment. During Run-II, ATLAS Inner Detector Alignment framework has been adapted and upgraded to correct very short time scale movements of the sub-detectors. In particular, a mechanical distortion of the IBL staves up to 20um has been observed during data-taking. The techniques used to correct for this effect and to match the required Inner Detector performance will be presented.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-22735802019-09-30T06:29:59Zhttp://cds.cern.ch/record/2273580engEstrada Pastor, OscarNovel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner DetectorParticle Physics - ExperimentATLAS is a multipurpose experiment at the LHC proton-proton collider. Its physics goals require high resolution, unbiased measurement of all charged particle kinematic parameters. These critically depend on the layout and performance of the tracking system and the quality of its offline alignment. For the LHC Run II, the system has been upgraded with the installation of a new pixel layer, the Insertable B-layer (IBL). Offline track alignment of the ATLAS tracking system has to deal with about 700,000 degrees of freedom (DoF) defining its geometrical parameters, representing a considerable numerical challenge in terms of both CPU time and precision. An outline of the track based alignment approach and its implementation within the ATLAS software will be presented. Special attention will be paid to describe the techniques allowing to pinpoint and eliminate track parameters biases due to alignment. During Run-II, ATLAS Inner Detector Alignment framework has been adapted and upgraded to correct very short time scale movements of the sub-detectors. In particular, a mechanical distortion of the IBL staves up to 20um has been observed during data-taking. The techniques used to correct for this effect and to match the required Inner Detector performance will be presented.ATL-SOFT-SLIDE-2017-449oai:cds.cern.ch:22735802017-07-08
spellingShingle Particle Physics - Experiment
Estrada Pastor, Oscar
Novel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner Detector
title Novel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner Detector
title_full Novel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner Detector
title_fullStr Novel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner Detector
title_full_unstemmed Novel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner Detector
title_short Novel methods in track-based alignment to correct for time-dependent distortions of the ATLAS Inner Detector
title_sort novel methods in track-based alignment to correct for time-dependent distortions of the atlas inner detector
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2273580
work_keys_str_mv AT estradapastoroscar novelmethodsintrackbasedalignmenttocorrectfortimedependentdistortionsoftheatlasinnerdetector