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Background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic rays

The first part of this thesis deals with the suppression of background sources contributing to the event sample used for the determination of the top quark mass. Jet merging scales of a kT jet algorithm are used as event shapes and a multivariate technique is applied to discriminate signal from W+je...

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Autor principal: Göttfert, Tobias
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/1511031
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author Göttfert, Tobias
author_facet Göttfert, Tobias
author_sort Göttfert, Tobias
collection CERN
description The first part of this thesis deals with the suppression of background sources contributing to the event sample used for the determination of the top quark mass. Jet merging scales of a kT jet algorithm are used as event shapes and a multivariate technique is applied to discriminate signal from W+jets physics background. Several kinematic variables are reviewed upon their capability to suppress wrong jet associations. The second part deals with track-based alignment of the silicon part of the ATLAS detector using cosmic rays. Additions to the LocalChi2 alignment algorithm are presented, which are supposed to improve alignment with cosmic ray data. The achieved alignment precision is evaluated and compared to previous results.
id cern-1511031
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-15110312019-09-30T06:29:59Zhttp://cds.cern.ch/record/1511031engGöttfert, TobiasBackground suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic raysParticle Physics - ExperimentThe first part of this thesis deals with the suppression of background sources contributing to the event sample used for the determination of the top quark mass. Jet merging scales of a kT jet algorithm are used as event shapes and a multivariate technique is applied to discriminate signal from W+jets physics background. Several kinematic variables are reviewed upon their capability to suppress wrong jet associations. The second part deals with track-based alignment of the silicon part of the ATLAS detector using cosmic rays. Additions to the LocalChi2 alignment algorithm are presented, which are supposed to improve alignment with cosmic ray data. The achieved alignment precision is evaluated and compared to previous results.CERN-THESIS-2009-227MPP-2010-4oai:cds.cern.ch:15110312013-01-30T14:27:59Z
spellingShingle Particle Physics - Experiment
Göttfert, Tobias
Background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic rays
title Background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic rays
title_full Background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic rays
title_fullStr Background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic rays
title_full_unstemmed Background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic rays
title_short Background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and Alignment of the ATLAS silicon detectors with cosmic rays
title_sort background suppression for a top quark mass measurement in the lepton+jets ttbar decay channel and alignment of the atlas silicon detectors with cosmic rays
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1511031
work_keys_str_mv AT gottferttobias backgroundsuppressionforatopquarkmassmeasurementintheleptonjetsttbardecaychannelandalignmentoftheatlassilicondetectorswithcosmicrays