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Correlations between high-p(T) and flavour physics

Squark and gluino decays are governed by the same mixing matrices as the contributions to flavour violating loop transitions of B-mesons. This allows for possible direct correlations between flavour non-diagonal observables in B and high-p_T physics. The present bounds on squark mixing, induced by t...

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Detalles Bibliográficos
Autores principales: Hurth, Tobias, Porod, Werner
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.084.0265
http://cds.cern.ch/record/1225094
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author Hurth, Tobias
Porod, Werner
author_facet Hurth, Tobias
Porod, Werner
author_sort Hurth, Tobias
collection CERN
description Squark and gluino decays are governed by the same mixing matrices as the contributions to flavour violating loop transitions of B-mesons. This allows for possible direct correlations between flavour non-diagonal observables in B and high-p_T physics. The present bounds on squark mixing, induced by the low-energy data on b to s transitions, still allow for large contributions to flavour violating squark decays at tree level. Due to the restrictions in flavour tagging at the LHC, additional information from future flavour experiments will be necessary to interpret those LHC data properly. Also the measurement of correlations between various squark decay modes at a future ILC would provide information about the flavour violating parameters.
id cern-1225094
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
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spelling cern-12250942023-03-14T20:13:02Zdoi:10.22323/1.084.0265http://cds.cern.ch/record/1225094engHurth, TobiasPorod, WernerCorrelations between high-p(T) and flavour physicsParticle Physics - PhenomenologySquark and gluino decays are governed by the same mixing matrices as the contributions to flavour violating loop transitions of B-mesons. This allows for possible direct correlations between flavour non-diagonal observables in B and high-p_T physics. The present bounds on squark mixing, induced by the low-energy data on b to s transitions, still allow for large contributions to flavour violating squark decays at tree level. Due to the restrictions in flavour tagging at the LHC, additional information from future flavour experiments will be necessary to interpret those LHC data properly. Also the measurement of correlations between various squark decay modes at a future ILC would provide information about the flavour violating parameters.Squark and gluino decays are governed by the same mixing matrices as the contributions to flavour violating loop transitions of B-mesons. This allows for possible direct correlations between flavour non-diagonal observables in B and high-p_T physics. The present bounds on squark mixing, induced by the low-energy data on b to s transitions, still allow for large contributions to flavour violating squark decays at tree level. Due to the restrictions in flavour tagging at the LHC, additional information from future flavour experiments will be necessary to interpret those LHC data properly. Also the measurement of correlations between various squark decay modes at a future ILC would provide information about the flavour violating parameters.arXiv:0911.4868CERN-PH-TH-2009-206MZ-TH-09-43CERN-PH-TH-2009-206MZ-TH-09-43oai:cds.cern.ch:12250942009-11-26
spellingShingle Particle Physics - Phenomenology
Hurth, Tobias
Porod, Werner
Correlations between high-p(T) and flavour physics
title Correlations between high-p(T) and flavour physics
title_full Correlations between high-p(T) and flavour physics
title_fullStr Correlations between high-p(T) and flavour physics
title_full_unstemmed Correlations between high-p(T) and flavour physics
title_short Correlations between high-p(T) and flavour physics
title_sort correlations between high-p(t) and flavour physics
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.22323/1.084.0265
http://cds.cern.ch/record/1225094
work_keys_str_mv AT hurthtobias correlationsbetweenhighptandflavourphysics
AT porodwerner correlationsbetweenhighptandflavourphysics