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New Physics from Flavour
The UT{\it{fit}} Collaboration has produced several analyses in the context of flavour physics both within and beyond the Standard Model. In this paper we present updated results for the Standard Model analysis of the Unitarity Triangle using the latest experimental and lattice QCD inputs, as well a...
Autores principales: | , , , , , , , , , , , |
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Lenguaje: | eng |
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2009
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Acceso en línea: | http://cds.cern.ch/record/1181242 |
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author | Bona, M. Pierini, M. Ciuchini, M. Lubicz, V. Tarantino, C. Franco, E. Martinelli, G. Silvestrini, L. Parodi, F. Schiavi, C. Sordini, V. Vagnoni, V. Vagnoni, V. |
author_facet | Bona, M. Pierini, M. Ciuchini, M. Lubicz, V. Tarantino, C. Franco, E. Martinelli, G. Silvestrini, L. Parodi, F. Schiavi, C. Sordini, V. Vagnoni, V. Vagnoni, V. |
author_sort | Bona, M. |
collection | CERN |
description | The UT{\it{fit}} Collaboration has produced several analyses in the context of flavour physics both within and beyond the Standard Model. In this paper we present updated results for the Standard Model analysis of the Unitarity Triangle using the latest experimental and lattice QCD inputs, as well as an update of the Unitarity Triangle analysis in a scenario beyond the Standard Model. Combining all available experimental and theoretical information on $\Delta F=2$ processes and using a model-independent parameterization, we extract the allowed New Physics contributions in the $K^0$, $D^0$, $B_d$, and $B_s$ sectors. We observe a departure of the $B_s$ mixing phase from the Standard Model expectation with a significance of about $3\sigma$. |
id | cern-1181242 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2009 |
record_format | invenio |
spelling | cern-11812422022-08-10T09:51:19Zhttp://cds.cern.ch/record/1181242engBona, M.Pierini, M.Ciuchini, M.Lubicz, V.Tarantino, C.Franco, E.Martinelli, G.Silvestrini, L.Parodi, F.Schiavi, C.Sordini, V.Vagnoni, V.Vagnoni, V.New Physics from Flavourhep-phParticle Physics - PhenomenologyThe UT{\it{fit}} Collaboration has produced several analyses in the context of flavour physics both within and beyond the Standard Model. In this paper we present updated results for the Standard Model analysis of the Unitarity Triangle using the latest experimental and lattice QCD inputs, as well as an update of the Unitarity Triangle analysis in a scenario beyond the Standard Model. Combining all available experimental and theoretical information on $\Delta F=2$ processes and using a model-independent parameterization, we extract the allowed New Physics contributions in the $K^0$, $D^0$, $B_d$, and $B_s$ sectors. We observe a departure of the $B_s$ mixing phase from the Standard Model expectation with a significance of about $3\sigma$.The UT{\it{fit}} Collaboration has produced several analyses in the context of flavour physics both within and beyond the Standard Model. In this paper we present updated results for the Standard Model analysis of the Unitarity Triangle using the latest experimental and lattice QCD inputs, as well as an update of the Unitarity Triangle analysis in a scenario beyond the Standard Model. Combining all available experimental and theoretical information on $\Delta F=2$ processes and using a model-independent parameterization, we extract the allowed New Physics contributions in the $K^0$, $D^0$, $B_d$, and $B_s$ sectors. We observe a departure of the $B_s$ mixing phase from the Standard Model expectation with a significance of about $3\sigma$.arXiv:0906.0953oai:cds.cern.ch:11812422009-06-05 |
spellingShingle | hep-ph Particle Physics - Phenomenology Bona, M. Pierini, M. Ciuchini, M. Lubicz, V. Tarantino, C. Franco, E. Martinelli, G. Silvestrini, L. Parodi, F. Schiavi, C. Sordini, V. Vagnoni, V. Vagnoni, V. New Physics from Flavour |
title | New Physics from Flavour |
title_full | New Physics from Flavour |
title_fullStr | New Physics from Flavour |
title_full_unstemmed | New Physics from Flavour |
title_short | New Physics from Flavour |
title_sort | new physics from flavour |
topic | hep-ph Particle Physics - Phenomenology |
url | http://cds.cern.ch/record/1181242 |
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