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The CMS Tracker alignment in p-p collisions

The CMS all-silicon tracker consists of 16588 modules. Aligning these with the desired precision of a few micrometers is only feasible using track based alignment procedures. Ultimate local precision is now achieved by the determination of sensor curvatures. This leads to about 200 000 parameters to...

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Detalles Bibliográficos
Autores principales: Bhardwaj, Ashutosh, Ranjan, Kirti
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1462970
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author Bhardwaj, Ashutosh
Ranjan, Kirti
author_facet Bhardwaj, Ashutosh
Ranjan, Kirti
author_sort Bhardwaj, Ashutosh
collection CERN
description The CMS all-silicon tracker consists of 16588 modules. Aligning these with the desired precision of a few micrometers is only feasible using track based alignment procedures. Ultimate local precision is now achieved by the determination of sensor curvatures. This leads to about 200 000 parameters to be calculated simultaneously. The Millepede II program interfaced with CMS software is optimized to provide solution in one step. The main remaining challenges are systematic distortions in the achieved geometry that are systematically biasing the track parameters like the track momenta. These distortions are controlled by adding further information into the alignment workflow, e.g. the mass of decaying resonances. In addition, the orientation of the tracker with respect to the magnetic field of CMS is determined with a stand-alone chi-square minimization procedure. The geometries are finally carefully validated. The monitored quantities include the basic track quantities for tracks from both collisions and cosmic muons and physics observables like resonance masses.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
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spelling cern-14629702019-09-30T06:29:59Zhttp://cds.cern.ch/record/1462970engBhardwaj, AshutoshRanjan, KirtiThe CMS Tracker alignment in p-p collisionsDetectors and Experimental TechniquesThe CMS all-silicon tracker consists of 16588 modules. Aligning these with the desired precision of a few micrometers is only feasible using track based alignment procedures. Ultimate local precision is now achieved by the determination of sensor curvatures. This leads to about 200 000 parameters to be calculated simultaneously. The Millepede II program interfaced with CMS software is optimized to provide solution in one step. The main remaining challenges are systematic distortions in the achieved geometry that are systematically biasing the track parameters like the track momenta. These distortions are controlled by adding further information into the alignment workflow, e.g. the mass of decaying resonances. In addition, the orientation of the tracker with respect to the magnetic field of CMS is determined with a stand-alone chi-square minimization procedure. The geometries are finally carefully validated. The monitored quantities include the basic track quantities for tracks from both collisions and cosmic muons and physics observables like resonance masses.CMS-CR-2012-134oai:cds.cern.ch:14629702012-06-09
spellingShingle Detectors and Experimental Techniques
Bhardwaj, Ashutosh
Ranjan, Kirti
The CMS Tracker alignment in p-p collisions
title The CMS Tracker alignment in p-p collisions
title_full The CMS Tracker alignment in p-p collisions
title_fullStr The CMS Tracker alignment in p-p collisions
title_full_unstemmed The CMS Tracker alignment in p-p collisions
title_short The CMS Tracker alignment in p-p collisions
title_sort cms tracker alignment in p-p collisions
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1462970
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AT ranjankirti thecmstrackeralignmentinppcollisions
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