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Measurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream Tracker

The LHCb experiment at the Large Hadron Collider provides a unique opportunity to study flavor physics with high luminosity. One topic in flavor physics is lepton flavor universality (LFU), a property of the standard model (SM) which requires the three generations of leptons (e, μ, τ ) couple to gau...

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Autor principal: Sun, Yipeng
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2855625
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author Sun, Yipeng
author_facet Sun, Yipeng
author_sort Sun, Yipeng
collection CERN
description The LHCb experiment at the Large Hadron Collider provides a unique opportunity to study flavor physics with high luminosity. One topic in flavor physics is lepton flavor universality (LFU), a property of the standard model (SM) which requires the three generations of leptons (e, μ, τ ) couple to gauge bosons of the eletroweak interactions with the same strength. It is an important probe for testing the validity of the SM and possibly providing hints to new physics beyond the SM. This thesis presents a preliminary framework for the measurement of R(D(∗)), a proxy to test LFU, defined as the ratio of branching fractions B(B → D(∗)τ −ντ )/B(B → D(∗)μ−νμ), with LHCb 2016 data. Another topic of the thesis is the upgrade of the LHCb Upstream Tracker (UT) which greatly increases the readout rate of the detector and removes limitations due to hardware trigger, paving the way for future precision measurements with even higher luminosity.
id cern-2855625
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
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spelling cern-28556252023-04-17T19:23:12Zhttp://cds.cern.ch/record/2855625engSun, YipengMeasurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream TrackerParticle Physics - ExperimentDetectors and Experimental TechniquesThe LHCb experiment at the Large Hadron Collider provides a unique opportunity to study flavor physics with high luminosity. One topic in flavor physics is lepton flavor universality (LFU), a property of the standard model (SM) which requires the three generations of leptons (e, μ, τ ) couple to gauge bosons of the eletroweak interactions with the same strength. It is an important probe for testing the validity of the SM and possibly providing hints to new physics beyond the SM. This thesis presents a preliminary framework for the measurement of R(D(∗)), a proxy to test LFU, defined as the ratio of branching fractions B(B → D(∗)τ −ντ )/B(B → D(∗)μ−νμ), with LHCb 2016 data. Another topic of the thesis is the upgrade of the LHCb Upstream Tracker (UT) which greatly increases the readout rate of the detector and removes limitations due to hardware trigger, paving the way for future precision measurements with even higher luminosity.CERN-THESIS-2023-031oai:cds.cern.ch:28556252023-04-06T08:42:59Z
spellingShingle Particle Physics - Experiment
Detectors and Experimental Techniques
Sun, Yipeng
Measurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream Tracker
title Measurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream Tracker
title_full Measurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream Tracker
title_fullStr Measurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream Tracker
title_full_unstemmed Measurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream Tracker
title_short Measurement of R(D(∗)) in semileptonic B decays and upgrade of the LHCb Upstream Tracker
title_sort measurement of r(d(∗)) in semileptonic b decays and upgrade of the lhcb upstream tracker
topic Particle Physics - Experiment
Detectors and Experimental Techniques
url http://cds.cern.ch/record/2855625
work_keys_str_mv AT sunyipeng measurementofrdinsemileptonicbdecaysandupgradeofthelhcbupstreamtracker