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A novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 data

This thesis presents the most recent studies of the D*-tagged $D^0 \to K_S^0 K^\pm \pi^\mp$ decay channels, using the LHCb data sample collected during the LHC Run~2. The core of the work consists in the design and implementation of a novel and robust analysis methodology that aims at measuring the...

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Autor principal: Biolchini, Alice
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:http://cds.cern.ch/record/2743700
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author Biolchini, Alice
author_facet Biolchini, Alice
author_sort Biolchini, Alice
collection CERN
description This thesis presents the most recent studies of the D*-tagged $D^0 \to K_S^0 K^\pm \pi^\mp$ decay channels, using the LHCb data sample collected during the LHC Run~2. The core of the work consists in the design and implementation of a novel and robust analysis methodology that aims at measuring the time-integrated CP asymmetry ($A_{CP}$), both by integrating over the entire phase space and in a restricted region, such as in the vicinity of the $K^*(892)^0 K^+ \pi^- $ resonance. The driving idea of the method exploits the cancellation of all nuisance asymmetries by means a double $\Delta A_{CP}$ mechanism between decay modes with very similar kinematics, and collected with very similar selections. The full data sample collected by the LHCb experiment during the LHC Run 2, corresponding to an integrated luminosity of about 5.6 fb-1, is used. Thanks to the optimized selection, the final sample is very pure allowing for the first time the measurement of the $A_{CP}(D^0 \to K_S^0 K \pi) $ at a unprecedented level of about 1x10-3. The study reported in this thesis returned to be very robust, since a double $\Delta A_{CP}$ difference mechanism is exploited to search for possible hints of CP-violating asymmetries in the $D^0 \to K_S^0 K^\pm \pi^\mp$ decays. It paves the way for a measurement with the already available Run~2 data sample at the per mil level, and for future measurements, at much higher statistics, in the Upgraded LHCb era.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2020
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spelling cern-27437002020-11-07T19:25:38Zhttp://cds.cern.ch/record/2743700engBiolchini, AliceA novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 dataParticle Physics - ExperimentThis thesis presents the most recent studies of the D*-tagged $D^0 \to K_S^0 K^\pm \pi^\mp$ decay channels, using the LHCb data sample collected during the LHC Run~2. The core of the work consists in the design and implementation of a novel and robust analysis methodology that aims at measuring the time-integrated CP asymmetry ($A_{CP}$), both by integrating over the entire phase space and in a restricted region, such as in the vicinity of the $K^*(892)^0 K^+ \pi^- $ resonance. The driving idea of the method exploits the cancellation of all nuisance asymmetries by means a double $\Delta A_{CP}$ mechanism between decay modes with very similar kinematics, and collected with very similar selections. The full data sample collected by the LHCb experiment during the LHC Run 2, corresponding to an integrated luminosity of about 5.6 fb-1, is used. Thanks to the optimized selection, the final sample is very pure allowing for the first time the measurement of the $A_{CP}(D^0 \to K_S^0 K \pi) $ at a unprecedented level of about 1x10-3. The study reported in this thesis returned to be very robust, since a double $\Delta A_{CP}$ difference mechanism is exploited to search for possible hints of CP-violating asymmetries in the $D^0 \to K_S^0 K^\pm \pi^\mp$ decays. It paves the way for a measurement with the already available Run~2 data sample at the per mil level, and for future measurements, at much higher statistics, in the Upgraded LHCb era.CERN-THESIS-2020-172oai:cds.cern.ch:27437002020-11-06T11:23:38Z
spellingShingle Particle Physics - Experiment
Biolchini, Alice
A novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 data
title A novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 data
title_full A novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 data
title_fullStr A novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 data
title_full_unstemmed A novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 data
title_short A novel method for searching for $C\!P$ violation in the $D^0 \to K^0_s K^{\pm}\pi^{\mp}$ decays with LHCb Run 2 data
title_sort novel method for searching for $c\!p$ violation in the $d^0 \to k^0_s k^{\pm}\pi^{\mp}$ decays with lhcb run 2 data
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2743700
work_keys_str_mv AT biolchinialice anovelmethodforsearchingforcpviolationinthed0tok0skpmpimpdecayswithlhcbrun2data
AT biolchinialice novelmethodforsearchingforcpviolationinthed0tok0skpmpimpdecayswithlhcbrun2data