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Alignment of the ATLAS Inner Detector

The Run-2 of the LHC has presented new challenges to track and vertex reconstruction with higher energies, denser jets and higher rates. In addition, the Insertable B-layer (IBL) is a fourth pixel layer, which has been deployed at the centre of ATLAS during the longshutdown-1 of the LHC. The physics...

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Autor principal: Marti-Garcia, Salvador
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2238429
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author Marti-Garcia, Salvador
author_facet Marti-Garcia, Salvador
author_sort Marti-Garcia, Salvador
collection CERN
description The Run-2 of the LHC has presented new challenges to track and vertex reconstruction with higher energies, denser jets and higher rates. In addition, the Insertable B-layer (IBL) is a fourth pixel layer, which has been deployed at the centre of ATLAS during the longshutdown-1 of the LHC. The physics performance of the experiment requires a high resolution and unbiased measurement of all charged particle kinematic parameters. In its turn, the performance of the tracking depends, among many other issues, on the accurate determination of the alignment parameters of the tracking sensors. The offline track based alignment of the ATLAS tracking system has to deal with more than 700,000 degrees of freedom (DoF). This represents a considerable numerical challenge in terms of both CPU time and precision. During Run-2, a mechanical distortion of the IBL staves up to 20um has been observed during data-taking, plus other short time scale movements. The talk will also describe the procedures implemented to detect and remove the alignment weak modes. Finally, a summary of the alignment aspects that may be relevant to the deployment of the future experiments, like the ones at ILC, will be discussed.
id cern-2238429
institution Organización Europea para la Investigación Nuclear
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spelling cern-22384292019-09-30T06:29:59Zhttp://cds.cern.ch/record/2238429engMarti-Garcia, SalvadorAlignment of the ATLAS Inner DetectorParticle Physics - ExperimentThe Run-2 of the LHC has presented new challenges to track and vertex reconstruction with higher energies, denser jets and higher rates. In addition, the Insertable B-layer (IBL) is a fourth pixel layer, which has been deployed at the centre of ATLAS during the longshutdown-1 of the LHC. The physics performance of the experiment requires a high resolution and unbiased measurement of all charged particle kinematic parameters. In its turn, the performance of the tracking depends, among many other issues, on the accurate determination of the alignment parameters of the tracking sensors. The offline track based alignment of the ATLAS tracking system has to deal with more than 700,000 degrees of freedom (DoF). This represents a considerable numerical challenge in terms of both CPU time and precision. During Run-2, a mechanical distortion of the IBL staves up to 20um has been observed during data-taking, plus other short time scale movements. The talk will also describe the procedures implemented to detect and remove the alignment weak modes. Finally, a summary of the alignment aspects that may be relevant to the deployment of the future experiments, like the ones at ILC, will be discussed.ATL-PHYS-SLIDE-2016-882oai:cds.cern.ch:22384292016-12-08
spellingShingle Particle Physics - Experiment
Marti-Garcia, Salvador
Alignment of the ATLAS Inner Detector
title Alignment of the ATLAS Inner Detector
title_full Alignment of the ATLAS Inner Detector
title_fullStr Alignment of the ATLAS Inner Detector
title_full_unstemmed Alignment of the ATLAS Inner Detector
title_short Alignment of the ATLAS Inner Detector
title_sort alignment of the atlas inner detector
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2238429
work_keys_str_mv AT martigarciasalvador alignmentoftheatlasinnerdetector