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Model-independent constraints on $\Delta F$=2 operators and the scale of New Physics

We update the constraints on new-physics contributions to Delta F=2 processes from the generalized unitarity triangle analysis, including the most recent experimental developments. Based on these constraints, we derive upper bounds on the coefficients of the most general Delta F=2 effective Hamilton...

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Autores principales: Bona, M., Ciuchini, M., Franco, E., Lubicz, V., Martinelli, G., Parodi, F., Pierini, M., Roudeau, P., Schiavi, C., Silvestrini, L., Sordini, V., Stocchi, A., Vagnoni, V.
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1126-6708/2008/03/049
http://cds.cern.ch/record/1045116
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author Bona, M.
Ciuchini, M.
Franco, E.
Lubicz, V.
Martinelli, G.
Parodi, F.
Pierini, M.
Roudeau, P.
Schiavi, C.
Silvestrini, L.
Sordini, V.
Stocchi, A.
Vagnoni, V.
author_facet Bona, M.
Ciuchini, M.
Franco, E.
Lubicz, V.
Martinelli, G.
Parodi, F.
Pierini, M.
Roudeau, P.
Schiavi, C.
Silvestrini, L.
Sordini, V.
Stocchi, A.
Vagnoni, V.
author_sort Bona, M.
collection CERN
description We update the constraints on new-physics contributions to Delta F=2 processes from the generalized unitarity triangle analysis, including the most recent experimental developments. Based on these constraints, we derive upper bounds on the coefficients of the most general Delta F=2 effective Hamiltonian. These upper bounds can be translated into lower bounds on the scale of new physics that contributes to these low-energy effective interactions. We point out that, due to the enhancement in the renormalization group evolution and in the matrix elements, the coefficients of non-standard operators are much more constrained than the coefficient of the operator present in the Standard Model. Therefore, the scale of new physics in models that generate new Delta F=2 operators, such as next-to-minimal flavour violation, has to be much higher than the scale of minimal flavour violation, and it most probably lies beyond the reach of direct searches at the LHC.
id cern-1045116
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10451162022-08-05T02:30:12Zdoi:10.1088/1126-6708/2008/03/049http://cds.cern.ch/record/1045116engBona, M.Ciuchini, M.Franco, E.Lubicz, V.Martinelli, G.Parodi, F.Pierini, M.Roudeau, P.Schiavi, C.Silvestrini, L.Sordini, V.Stocchi, A.Vagnoni, V.Model-independent constraints on $\Delta F$=2 operators and the scale of New PhysicsParticle Physics - PhenomenologyWe update the constraints on new-physics contributions to Delta F=2 processes from the generalized unitarity triangle analysis, including the most recent experimental developments. Based on these constraints, we derive upper bounds on the coefficients of the most general Delta F=2 effective Hamiltonian. These upper bounds can be translated into lower bounds on the scale of new physics that contributes to these low-energy effective interactions. We point out that, due to the enhancement in the renormalization group evolution and in the matrix elements, the coefficients of non-standard operators are much more constrained than the coefficient of the operator present in the Standard Model. Therefore, the scale of new physics in models that generate new Delta F=2 operators, such as next-to-minimal flavour violation, has to be much higher than the scale of minimal flavour violation, and it most probably lies beyond the reach of direct searches at the LHC.We update the constraints on new-physics contributions to Delta F=2 processes from the generalized unitarity triangle analysis, including the most recent experimental developments. Based on these constraints, we derive upper bounds on the coefficients of the most general Delta F=2 effective Hamiltonian. These upper bounds can be translated into lower bounds on the scale of new physics that contributes to these low-energy effective interactions. We point out that, due to the enhancement in the renormalization group evolution and in the matrix elements, the coefficients of non-standard operators are much more constrained than the coefficient of the operator present in the Standard Model. Therefore, the scale of new physics in models that generate new Delta F=2 operators, such as next-to-minimal flavour violation, has to be much higher than the scale of minimal flavour violation, and it most probably lies beyond the reach of direct searches at the LHC.arXiv:0707.0636oai:cds.cern.ch:10451162007-07-05
spellingShingle Particle Physics - Phenomenology
Bona, M.
Ciuchini, M.
Franco, E.
Lubicz, V.
Martinelli, G.
Parodi, F.
Pierini, M.
Roudeau, P.
Schiavi, C.
Silvestrini, L.
Sordini, V.
Stocchi, A.
Vagnoni, V.
Model-independent constraints on $\Delta F$=2 operators and the scale of New Physics
title Model-independent constraints on $\Delta F$=2 operators and the scale of New Physics
title_full Model-independent constraints on $\Delta F$=2 operators and the scale of New Physics
title_fullStr Model-independent constraints on $\Delta F$=2 operators and the scale of New Physics
title_full_unstemmed Model-independent constraints on $\Delta F$=2 operators and the scale of New Physics
title_short Model-independent constraints on $\Delta F$=2 operators and the scale of New Physics
title_sort model-independent constraints on $\delta f$=2 operators and the scale of new physics
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1088/1126-6708/2008/03/049
http://cds.cern.ch/record/1045116
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