Published December 18, 2020 | Version v1
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Excerpts from the LHCb cookbook - RECEPTS for testing lepton universality and reconstructing primary vertices

Description

Lepton universality is an accidental symmetry of the Standard Model of particles physics, which expects that the charged leptons have the same characteristics with the exception of their masses. Experimental tests of lepton universality have shown hints of deviations from the Standard Model. This thesis presents a test of lepton universality using semileptonic b-hadron decays to final states involving a muon or an electron using data recorded with the LHCb detector in the years 2016, 2017 and 2018. The test is performed by measuring the branching fraction of the B-bar0 → D*+eν-bare decay relative to the branching fraction of the B-bar0 → D*+μ-barμ decay, with the result R(D*+)light = B(B-bar0 → D*+e-ν-bare)/B(B-bar0 → D*+μ-ν-barμ) = X x (2.937 ± 0.014(stat.) ± 0.063(syst.)); where X is a blinding factor. This is the first time this ratio is measured at a hadron-hadron collider. It is shown that the systematic uncertainties related to the different behaviour of electrons and muons in the detector can be controlled to a level that a similar sensitivity to measurements at electron-positron colliders can be achieved. The LHCb Upgrade for Run 3 of the Large Hadron Collider will rely on a completely software-based trigger, whose first stage needs to process events at a rate of up to 30 MHz. An implementation of the complete first trigger stage on GPUs was developed by the LHCb collaboration. During this thesis, the algorithm to reconstruct the proton-proton interaction points, necessary to identify displaced signatures, is implemented on GPUs. Changes to the original CPU implementation to achieve a fast and efficient algorithm are presented. The GPU algorithm is shown to fulfil the physics performance and throughput requirements of the Run 3 trigger. (author)

Abstract (French)

L'universalite lepton est une symetrie accidentelle du modele standard de la physique des particules, qui s'attend a ce que les leptons charges aient les memes caracteristiques mais leurs masses. Tests experimentaux de l'universalite leptonique ont montre des indices d'ecarts par rapport au modele standard. Cette these presente un test d'universalite leptonique utilisant des desintegrations semileptoniques de b-hadrons en etats finaux impliquant un muon ou un electron utilisant des donnees enregistrees avec le detecteur LHCb dans les annees 2016, 2017 et 2018. Le test est effectue en mesurant la fraction de ramification de la decroissance B-bar0 → D*+e-ν-bare par rapport a la fraction de ramification de la desintegration B-bar0 → D*+μ-barμ. C'est la premiere fois que ce rapport est mesure sur un collisionneur hadrons-hadrons. On montre que les incertitudes systematiques liees au comportement different de l'electron et les muons dans le detecteur peuvent etre controles a un niveau qui une sensibilite similaire aux mesures a Des collisionneurs electron-positon peuvent etre atteints. La mise a niveau LHCb pour l'execution 3 du detecteur de grand collisionneur de hadrons reposera sur une declencheur base sur logiciel, dont le premier etage doit traiter les evenements a une frequence allant jusqu'a 30 MHz. La mise en oeuvre de la premiere etape de declenchement complete sur les GPU a ete developpee par la collaboration LHCb discours solennel. Au cours de cette these, l'algorithme de reconstruction des points d'interaction proton-proton, necessaire pour identifier les signatures deplacees, est implemente sur les GPU. Modifications apportees au processeur d'origine mise en oeuvre pour obtenir un algorithme rapide et efficace sont presentes. L'algorithme GPU est montre pour remplir les performances physiques et l'exigence de debit du declencheur Run 3. (auteur)

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Additional details

Additional titles

Original title (English)
Extraits du livre de recettes LHCb - RECEPTS pour tester l'universalite des leptons et reconstruire les vertex primaires

Publishing Information

Imprint Pagination
236 p.
Report number
FRNC-TH--13813

INIS

Country of Publication
France
Country of Input or Organization
France
INIS RN
54020327
Subject category
S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
DATA ANALYSIS; FLAVOR MODEL; LHCB DETECTOR; PARTICLE IDENTIFICATION; SEMILEPTONIC DECAY
Descriptors DEC
COMPOSITE MODELS; DATA PROCESSING; DECAY; MATHEMATICAL MODELS; MEASURING INSTRUMENTS; PARTICLE DECAY; PARTICLE MODELS; PROCESSING; QUARK MODEL; RADIATION DETECTORS; WEAK PARTICLE DECAY

Optional Information

Notes
103 refs.; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses