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Analysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final State

This report describes the project that I worked on during my time as a summer student at CERN in summer 2014: A search for the rare decay $B_s \rightarrow f_2' \mu^+ \mu^-$ at the LHCb experiment has been performed using data corresponding to an integrated luminosity $\mathcal{L} = 3.0 \text{ f...

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Autor principal: Berninghoff, Daniel Alexander
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1756879
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author Berninghoff, Daniel Alexander
author_facet Berninghoff, Daniel Alexander
author_sort Berninghoff, Daniel Alexander
collection CERN
description This report describes the project that I worked on during my time as a summer student at CERN in summer 2014: A search for the rare decay $B_s \rightarrow f_2' \mu^+ \mu^-$ at the LHCb experiment has been performed using data corresponding to an integrated luminosity $\mathcal{L} = 3.0 \text{ fb}^{-1}$. In the Standard Model (SM), this decay is highly suppressed as it proceeds via an electroweak penguin transition. New Physics (NP) effects can enter the loop and influence observables like the branching ratio $\mathcal{B}$. A theoretical prediction of the branching ratio in the SM is given by $\mathcal{B}_\text{th}(B_s \rightarrow f_2' \mu^+ \mu^-) = \left( 1.8\,^{+1.1}_{-0.7} \right) \cdot 10^{-7}$. We found $N_\text{obs} = 17.2 \pm 2.9$ signal candidates using a two dimensional mass fit which is in the same order of magnitude as the theoretical prediction $N_\text{pred} = 15_{-7}^{+10}$. Though, further systematic effects in the analysis still have to be investigated before converting this into a reliable value for the branching ratio $\mathcal{B}(B_s \rightarrow f_2' \mu^+ \mu^-)$.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-17568792019-09-30T06:29:59Zhttp://cds.cern.ch/record/1756879engBerninghoff, Daniel AlexanderAnalysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final StateParticle Physics - ExperimentThis report describes the project that I worked on during my time as a summer student at CERN in summer 2014: A search for the rare decay $B_s \rightarrow f_2' \mu^+ \mu^-$ at the LHCb experiment has been performed using data corresponding to an integrated luminosity $\mathcal{L} = 3.0 \text{ fb}^{-1}$. In the Standard Model (SM), this decay is highly suppressed as it proceeds via an electroweak penguin transition. New Physics (NP) effects can enter the loop and influence observables like the branching ratio $\mathcal{B}$. A theoretical prediction of the branching ratio in the SM is given by $\mathcal{B}_\text{th}(B_s \rightarrow f_2' \mu^+ \mu^-) = \left( 1.8\,^{+1.1}_{-0.7} \right) \cdot 10^{-7}$. We found $N_\text{obs} = 17.2 \pm 2.9$ signal candidates using a two dimensional mass fit which is in the same order of magnitude as the theoretical prediction $N_\text{pred} = 15_{-7}^{+10}$. Though, further systematic effects in the analysis still have to be investigated before converting this into a reliable value for the branching ratio $\mathcal{B}(B_s \rightarrow f_2' \mu^+ \mu^-)$.CERN-STUDENTS-Note-2014-213oai:cds.cern.ch:17568792014-09-19
spellingShingle Particle Physics - Experiment
Berninghoff, Daniel Alexander
Analysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final State
title Analysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final State
title_full Analysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final State
title_fullStr Analysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final State
title_full_unstemmed Analysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final State
title_short Analysis of the Rare Decay $B_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow K^+ K^-$ Final State
title_sort analysis of the rare decay $b_s \rightarrow f_2' \mu^+ \mu^-$ with $f_2' \rightarrow k^+ k^-$ final state
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1756879
work_keys_str_mv AT berninghoffdanielalexander analysisoftheraredecaybsrightarrowf2mumuwithf2rightarrowkkfinalstate