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Study of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RK

Rare beauty decays proceed mostly through the Flavor Changing Neutral Current, which is possible only at loop level in the Standard Model. These FCNC processes are subject to GIM suppression leading to a rare decay. Therefore the [Math Processing Error] processes are good tools to look for New Physi...

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Autor principal: Coquereau, Samuel
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2131205
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author Coquereau, Samuel
author_facet Coquereau, Samuel
author_sort Coquereau, Samuel
collection CERN
description Rare beauty decays proceed mostly through the Flavor Changing Neutral Current, which is possible only at loop level in the Standard Model. These FCNC processes are subject to GIM suppression leading to a rare decay. Therefore the [Math Processing Error] processes are good tools to look for New Physics phenomenon beyond the Standard Model. New Physics particle could become detectable by causing deviation from the Standard Model predictions for observables such as angular observables, branching ratio or CP asymmetries. This thesis present the angular analysis of the [Math Processing Error] decay with the whole dataset collected by lhcb during the first run of the lhc. The full set of the angular observables has been measured through a maximum likelihood fit, thanks to an improved selection and the 3 fb[Math Processing Error] of data collected in 2011 and 2012 by lhcb. In addition, the analysis on the measurement of the ratio [Math Processing Error] has also been presented and the results are expected by the end of 2015.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2016
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spelling cern-21312052019-09-30T06:29:59Zhttp://cds.cern.ch/record/2131205engCoquereau, SamuelStudy of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RKParticle Physics - ExperimentRare beauty decays proceed mostly through the Flavor Changing Neutral Current, which is possible only at loop level in the Standard Model. These FCNC processes are subject to GIM suppression leading to a rare decay. Therefore the [Math Processing Error] processes are good tools to look for New Physics phenomenon beyond the Standard Model. New Physics particle could become detectable by causing deviation from the Standard Model predictions for observables such as angular observables, branching ratio or CP asymmetries. This thesis present the angular analysis of the [Math Processing Error] decay with the whole dataset collected by lhcb during the first run of the lhc. The full set of the angular observables has been measured through a maximum likelihood fit, thanks to an improved selection and the 3 fb[Math Processing Error] of data collected in 2011 and 2012 by lhcb. In addition, the analysis on the measurement of the ratio [Math Processing Error] has also been presented and the results are expected by the end of 2015.CERN-THESIS-2016-006oai:cds.cern.ch:21312052016-02-11T16:34:52Z
spellingShingle Particle Physics - Experiment
Coquereau, Samuel
Study of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RK
title Study of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RK
title_full Study of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RK
title_fullStr Study of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RK
title_full_unstemmed Study of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RK
title_short Study of the B0→K*0μ+μ- decay with the LHCb experiment : angular analysis and measurement of the ratio RK
title_sort study of the b0→k*0μ+μ- decay with the lhcb experiment : angular analysis and measurement of the ratio rk
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2131205
work_keys_str_mv AT coquereausamuel studyoftheb0k0mmdecaywiththelhcbexperimentangularanalysisandmeasurementoftheratiork