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Precision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New Physics

CP-violating effects in the time-dependent angular distribution of the B^0_s -> J/psi[-> ell^+ ell^-] phi[-> K^+K^-] decay products play a key role for the search of new physics. The hadronic Standard-Model uncertainties are related to doubly Cabibbo-suppressed penguin contributions and are...

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Detalles Bibliográficos
Autores principales: Faller, Sven, Fleischer, Robert, Mannel, Thomas
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.79.014005
http://cds.cern.ch/record/1136106
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author Faller, Sven
Fleischer, Robert
Mannel, Thomas
author_facet Faller, Sven
Fleischer, Robert
Mannel, Thomas
author_sort Faller, Sven
collection CERN
description CP-violating effects in the time-dependent angular distribution of the B^0_s -> J/psi[-> ell^+ ell^-] phi[-> K^+K^-] decay products play a key role for the search of new physics. The hadronic Standard-Model uncertainties are related to doubly Cabibbo-suppressed penguin contributions and are usually assumed to be negligibly small. In view of recent results from the Tevatron and the quickly approaching start of the data taking at the LHC, we have a critical look at the impact of these terms, which could be enhanced through long-distance QCD phenomena, and explore the associated uncertainty for the measurement of the CP-violating B^0_s-\bar B^0_s mixing phase. We point out that these effects can actually be controlled by means of an analysis of the time-dependent angular distribution of the B^0_s -> J/psi[-> ell^+ ell^-] \bar K^{*0}[-> pi^+ K^-] decay products, and illustrate this through numerical studies. Moreover, we discuss SU(3)-breaking effects, which limit the theoretical accuracy of our method, and suggest internal consistency checks of SU(3).
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spelling cern-11361062019-09-30T06:29:59Zdoi:10.1103/PhysRevD.79.014005http://cds.cern.ch/record/1136106engFaller, SvenFleischer, RobertMannel, ThomasPrecision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New PhysicsParticle Physics - PhenomenologyCP-violating effects in the time-dependent angular distribution of the B^0_s -> J/psi[-> ell^+ ell^-] phi[-> K^+K^-] decay products play a key role for the search of new physics. The hadronic Standard-Model uncertainties are related to doubly Cabibbo-suppressed penguin contributions and are usually assumed to be negligibly small. In view of recent results from the Tevatron and the quickly approaching start of the data taking at the LHC, we have a critical look at the impact of these terms, which could be enhanced through long-distance QCD phenomena, and explore the associated uncertainty for the measurement of the CP-violating B^0_s-\bar B^0_s mixing phase. We point out that these effects can actually be controlled by means of an analysis of the time-dependent angular distribution of the B^0_s -> J/psi[-> ell^+ ell^-] \bar K^{*0}[-> pi^+ K^-] decay products, and illustrate this through numerical studies. Moreover, we discuss SU(3)-breaking effects, which limit the theoretical accuracy of our method, and suggest internal consistency checks of SU(3).arXiv:0810.4248CERN-PH-TH-2008-167SI-HEP-2008-15oai:cds.cern.ch:11361062008-10-24
spellingShingle Particle Physics - Phenomenology
Faller, Sven
Fleischer, Robert
Mannel, Thomas
Precision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New Physics
title Precision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New Physics
title_full Precision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New Physics
title_fullStr Precision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New Physics
title_full_unstemmed Precision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New Physics
title_short Precision Physics with $B^{0}_{s} \to J/\psi \phi$ at the LHC: The Quest for New Physics
title_sort precision physics with $b^{0}_{s} \to j/\psi \phi$ at the lhc: the quest for new physics
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.79.014005
http://cds.cern.ch/record/1136106
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