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Complementary strategy of New Physics searches in B-sector

We discuss a strategy for NP searches at LHC based on comparison of particular CKM matrix elements, which can be obtained from the processes of different topology. This analysis is complementary to the standard formalism of the unitarity triangle. We stress the utmost importance of lattice computati...

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Detalles Bibliográficos
Autores principales: Golutvin, A.I., Shevchenko, V.I.
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/984123
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author Golutvin, A.I.
Shevchenko, V.I.
author_facet Golutvin, A.I.
Shevchenko, V.I.
author_sort Golutvin, A.I.
collection CERN
description We discuss a strategy for NP searches at LHC based on comparison of particular CKM matrix elements, which can be obtained from the processes of different topology. This analysis is complementary to the standard formalism of the unitarity triangle. We stress the utmost importance of lattice computations of some particular set of hadronic inputs (relevant for NP searches) with respect to others that provide no essential information about possible NP effects.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
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spelling cern-9841232023-03-14T19:48:37Zhttp://cds.cern.ch/record/984123engGolutvin, A.I.Shevchenko, V.I.Complementary strategy of New Physics searches in B-sectorParticle Physics - PhenomenologyWe discuss a strategy for NP searches at LHC based on comparison of particular CKM matrix elements, which can be obtained from the processes of different topology. This analysis is complementary to the standard formalism of the unitarity triangle. We stress the utmost importance of lattice computations of some particular set of hadronic inputs (relevant for NP searches) with respect to others that provide no essential information about possible NP effects.We discuss a possible strategy for studies of a particular next-to-minimal flavor violation New Physics (NP) scenario at LHC. Our analysis is based on comparison of particular CKM matrix elements, which can be obtained from the processes dominated by diagrams of different topology (tree, penguin and box). We argue that the standard formalism of the overall unitarity triangle fit is not suitable for searches of the chosen NP. We also stress the importance of lattice computations of some relevant hadronic inputs.We discuss a possible strategy for studies of a particular next-to-minimal flavor violation New Physics (NP) scenario at LHC. Our analysis is based on comparison of particular CKM matrix elements, which can be obtained from the processes dominated by diagrams of different topology (tree, penguin and box). We argue that the standard formalism of the overall unitarity triangle fit is not suitable for searches of the chosen NP. We also stress the importance of lattice computations of some relevant hadronic inputs.We discuss a possible strategy for studies of a particular next-to-minimal flavor violation New Physics (NP) scenario at LHC. Our analysis is based on comparison of particular CKM matrix elements, which can be obtained from the processes dominated by diagrams of different topology (tree, penguin and box). We argue that the standard formalism of the overall unitarity triangle fit is not suitable for searches of the chosen NP. We also stress the importance of lattice computations of some relevant hadronic inputs.hep-ph/0609175LAPP-EXP-2006-05oai:cds.cern.ch:9841232006-09-18
spellingShingle Particle Physics - Phenomenology
Golutvin, A.I.
Shevchenko, V.I.
Complementary strategy of New Physics searches in B-sector
title Complementary strategy of New Physics searches in B-sector
title_full Complementary strategy of New Physics searches in B-sector
title_fullStr Complementary strategy of New Physics searches in B-sector
title_full_unstemmed Complementary strategy of New Physics searches in B-sector
title_short Complementary strategy of New Physics searches in B-sector
title_sort complementary strategy of new physics searches in b-sector
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/984123
work_keys_str_mv AT golutvinai complementarystrategyofnewphysicssearchesinbsector
AT shevchenkovi complementarystrategyofnewphysicssearchesinbsector