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Search for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCb

The SM is, up to now, a robust model that describes with high accuracy the interactions between elementary particles. However, several processes, like the observation of neutrino oscillations or the presence of dark matter in the universe, constitute signs of physics beyond this model. The LHCb expe...

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Autor principal: Ramos Pernas, Miguel
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:http://cds.cern.ch/record/2728965
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author Ramos Pernas, Miguel
author_facet Ramos Pernas, Miguel
author_sort Ramos Pernas, Miguel
collection CERN
description The SM is, up to now, a robust model that describes with high accuracy the interactions between elementary particles. However, several processes, like the observation of neutrino oscillations or the presence of dark matter in the universe, constitute signs of physics beyond this model. The LHCb experiment, located at the CERN, aims at contributing to clarify the picture we currently have about particle physics, and to understand the laws that rule our universe. By studying the decays of certain particles produced at the LHC, one can infer the existence of new particles. These new particles might give extra degrees of freedom and, complementing the SM, would allow to explain other processes. This work constitutes a search for physics beyond the SM in $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ decays, and the development of reconstruction techniques and trigger configurations to study strange decays in the LHCb experiment. In the first place, an overview to the theory of particle physics is presented. The SM is explained, together with new theoretical proposals, and its relation with strange decays. A description of the LHCb detector follows the previous chapter, emphasizing the features that make this unique detector able to study strange decays. Afterwards, the search for the $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ decay at LHCb is presented, whose result constitutes up to date, the most stringent limit on the branching fraction of this mode. To finalize, the upgrade of the LHCb detector is discussed, and a work on new reconstruction techniques for muons in this environment is presented. These results are complemented with preliminary trigger studies for some strange decays of interest, including $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$.
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spelling cern-27289652020-09-28T13:00:03Zhttp://cds.cern.ch/record/2728965engRamos Pernas, MiguelSearch for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCbParticle Physics - ExperimentDetectors and Experimental TechniquesThe SM is, up to now, a robust model that describes with high accuracy the interactions between elementary particles. However, several processes, like the observation of neutrino oscillations or the presence of dark matter in the universe, constitute signs of physics beyond this model. The LHCb experiment, located at the CERN, aims at contributing to clarify the picture we currently have about particle physics, and to understand the laws that rule our universe. By studying the decays of certain particles produced at the LHC, one can infer the existence of new particles. These new particles might give extra degrees of freedom and, complementing the SM, would allow to explain other processes. This work constitutes a search for physics beyond the SM in $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ decays, and the development of reconstruction techniques and trigger configurations to study strange decays in the LHCb experiment. In the first place, an overview to the theory of particle physics is presented. The SM is explained, together with new theoretical proposals, and its relation with strange decays. A description of the LHCb detector follows the previous chapter, emphasizing the features that make this unique detector able to study strange decays. Afterwards, the search for the $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ decay at LHCb is presented, whose result constitutes up to date, the most stringent limit on the branching fraction of this mode. To finalize, the upgrade of the LHCb detector is discussed, and a work on new reconstruction techniques for muons in this environment is presented. These results are complemented with preliminary trigger studies for some strange decays of interest, including $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$.CERN-THESIS-2020-101oai:cds.cern.ch:27289652020-08-27T09:37:41Z
spellingShingle Particle Physics - Experiment
Detectors and Experimental Techniques
Ramos Pernas, Miguel
Search for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCb
title Search for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCb
title_full Search for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCb
title_fullStr Search for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCb
title_full_unstemmed Search for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCb
title_short Search for $K_\mathrm{S}^0 \rightarrow \mu^+\mu^-$ and trigger developments at LHCb
title_sort search for $k_\mathrm{s}^0 \rightarrow \mu^+\mu^-$ and trigger developments at lhcb
topic Particle Physics - Experiment
Detectors and Experimental Techniques
url http://cds.cern.ch/record/2728965
work_keys_str_mv AT ramospernasmiguel searchforkmathrms0rightarrowmumuandtriggerdevelopmentsatlhcb