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Unitarity Triangle Analysis in the Standard Model and Beyond

Flavour physics represents a unique test bench for the Standard Model (SM). New analyses performed at the LHC experiments are now providing unprecedented insights into CKM metrology and new evidences for rare decays. The CKM picture can provide very precise SM predictions through global analyses. We...

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Autores principales: Alpigiani, Cristiano, Bevan, Adrian, Bona, Marcella, Ciuchini, Marco, Derkach, Denis, Franco, Enrico, Lubicz, Vittorio, Martinelli, Guido, Parodi, Fabrizio, Pierini, Maurizio, Silvestrini, Luca, Sordini, Viola, Stocchi, Achille, Tarantino, Cecilia, Vagnoni, Vincenzo
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2296681
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author Alpigiani, Cristiano
Bevan, Adrian
Bona, Marcella
Ciuchini, Marco
Derkach, Denis
Franco, Enrico
Lubicz, Vittorio
Martinelli, Guido
Parodi, Fabrizio
Pierini, Maurizio
Silvestrini, Luca
Sordini, Viola
Stocchi, Achille
Tarantino, Cecilia
Vagnoni, Vincenzo
author_facet Alpigiani, Cristiano
Bevan, Adrian
Bona, Marcella
Ciuchini, Marco
Derkach, Denis
Franco, Enrico
Lubicz, Vittorio
Martinelli, Guido
Parodi, Fabrizio
Pierini, Maurizio
Silvestrini, Luca
Sordini, Viola
Stocchi, Achille
Tarantino, Cecilia
Vagnoni, Vincenzo
author_sort Alpigiani, Cristiano
collection CERN
description Flavour physics represents a unique test bench for the Standard Model (SM). New analyses performed at the LHC experiments are now providing unprecedented insights into CKM metrology and new evidences for rare decays. The CKM picture can provide very precise SM predictions through global analyses. We present here the results of the latest global SM analysis performed by the UTfit collaboration including all the most updated inputs from experiments, lattice QCD and phenomenological calculations. In addition, the Unitarity Triangle (UT) analysis can be used to constrain the parameter space in possible new physics (NP) scenarios. We update here also the UT analysis beyond the SM by the UTfit collaboration. All of the available experimental and theoretical information on $\Delta F=2$ processes is reinterpreted including a model-independent NP parametrisation. We determine the allowed NP contributions in the kaon, $D$, $B_d$, and $B_s$ sectors and, in various NP scenarios, we translate them into bounds for the NP scale as a function of NP couplings.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling cern-22966812022-08-05T02:30:14Zhttp://cds.cern.ch/record/2296681engAlpigiani, CristianoBevan, AdrianBona, MarcellaCiuchini, MarcoDerkach, DenisFranco, EnricoLubicz, VittorioMartinelli, GuidoParodi, FabrizioPierini, MaurizioSilvestrini, LucaSordini, ViolaStocchi, AchilleTarantino, CeciliaVagnoni, VincenzoUnitarity Triangle Analysis in the Standard Model and Beyondhep-phParticle Physics - PhenomenologyFlavour physics represents a unique test bench for the Standard Model (SM). New analyses performed at the LHC experiments are now providing unprecedented insights into CKM metrology and new evidences for rare decays. The CKM picture can provide very precise SM predictions through global analyses. We present here the results of the latest global SM analysis performed by the UTfit collaboration including all the most updated inputs from experiments, lattice QCD and phenomenological calculations. In addition, the Unitarity Triangle (UT) analysis can be used to constrain the parameter space in possible new physics (NP) scenarios. We update here also the UT analysis beyond the SM by the UTfit collaboration. All of the available experimental and theoretical information on $\Delta F=2$ processes is reinterpreted including a model-independent NP parametrisation. We determine the allowed NP contributions in the kaon, $D$, $B_d$, and $B_s$ sectors and, in various NP scenarios, we translate them into bounds for the NP scale as a function of NP couplings.arXiv:1710.09644oai:cds.cern.ch:22966812017
spellingShingle hep-ph
Particle Physics - Phenomenology
Alpigiani, Cristiano
Bevan, Adrian
Bona, Marcella
Ciuchini, Marco
Derkach, Denis
Franco, Enrico
Lubicz, Vittorio
Martinelli, Guido
Parodi, Fabrizio
Pierini, Maurizio
Silvestrini, Luca
Sordini, Viola
Stocchi, Achille
Tarantino, Cecilia
Vagnoni, Vincenzo
Unitarity Triangle Analysis in the Standard Model and Beyond
title Unitarity Triangle Analysis in the Standard Model and Beyond
title_full Unitarity Triangle Analysis in the Standard Model and Beyond
title_fullStr Unitarity Triangle Analysis in the Standard Model and Beyond
title_full_unstemmed Unitarity Triangle Analysis in the Standard Model and Beyond
title_short Unitarity Triangle Analysis in the Standard Model and Beyond
title_sort unitarity triangle analysis in the standard model and beyond
topic hep-ph
Particle Physics - Phenomenology
url http://cds.cern.ch/record/2296681
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