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New Physics Signatures in Kaon Decays

Kaon physics provides a unique opportunity to identify new flavour and CP violating interactions beyond the Standard Model (SM). In the SM, implied by the hierarchical structure of the CKM matrix and the GIM mechanism, flavour changing neutral current processes are most strongly suppressed in the ka...

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Autor principal: Blanke, Monika
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.181.0010
http://cds.cern.ch/record/1551132
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author Blanke, Monika
author_facet Blanke, Monika
author_sort Blanke, Monika
collection CERN
description Kaon physics provides a unique opportunity to identify new flavour and CP violating interactions beyond the Standard Model (SM). In the SM, implied by the hierarchical structure of the CKM matrix and the GIM mechanism, flavour changing neutral current processes are most strongly suppressed in the kaon sector while the suppression is much less effective in the B meson systems. Thus their theoretical cleanness makes rare K decays, in particular the K -> pi nu anti-nu system, extremely well suited to look for deviations from their tiny SM values. Despite the increasingly stringent constraints on new physics from direct search experiments as well as indirect searches in B meson decays, large enhancements of both K^+ -> pi^+ nu anti-nu and K_L -> pi^0 nu anti-nu are still possible, and deviations from the SM could be observed even for a multi-TeV new physics scale. In addition the correlation betweeen the charged and neutral K -> pi nu anti-nu modes provides insight on the new physics operator structure in K^0 - anti-K^0 mixing and its interplay with rare K decays. Useful model-discriminating correlations exist also in the K_L -> pi^0 l^+ l^- system. Finally the K -> l nu decays provide a clean test of lepton universality and place constraints on new physics complementary to the ones obtained from the searches for charged lepton flavour violating decays.
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spelling cern-15511322019-09-30T06:29:59Zdoi:10.22323/1.181.0010http://cds.cern.ch/record/1551132engBlanke, MonikaNew Physics Signatures in Kaon DecaysParticle Physics - PhenomenologyKaon physics provides a unique opportunity to identify new flavour and CP violating interactions beyond the Standard Model (SM). In the SM, implied by the hierarchical structure of the CKM matrix and the GIM mechanism, flavour changing neutral current processes are most strongly suppressed in the kaon sector while the suppression is much less effective in the B meson systems. Thus their theoretical cleanness makes rare K decays, in particular the K -> pi nu anti-nu system, extremely well suited to look for deviations from their tiny SM values. Despite the increasingly stringent constraints on new physics from direct search experiments as well as indirect searches in B meson decays, large enhancements of both K^+ -> pi^+ nu anti-nu and K_L -> pi^0 nu anti-nu are still possible, and deviations from the SM could be observed even for a multi-TeV new physics scale. In addition the correlation betweeen the charged and neutral K -> pi nu anti-nu modes provides insight on the new physics operator structure in K^0 - anti-K^0 mixing and its interplay with rare K decays. Useful model-discriminating correlations exist also in the K_L -> pi^0 l^+ l^- system. Finally the K -> l nu decays provide a clean test of lepton universality and place constraints on new physics complementary to the ones obtained from the searches for charged lepton flavour violating decays.arXiv:1305.5671oai:cds.cern.ch:15511322013-05-24
spellingShingle Particle Physics - Phenomenology
Blanke, Monika
New Physics Signatures in Kaon Decays
title New Physics Signatures in Kaon Decays
title_full New Physics Signatures in Kaon Decays
title_fullStr New Physics Signatures in Kaon Decays
title_full_unstemmed New Physics Signatures in Kaon Decays
title_short New Physics Signatures in Kaon Decays
title_sort new physics signatures in kaon decays
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.22323/1.181.0010
http://cds.cern.ch/record/1551132
work_keys_str_mv AT blankemonika newphysicssignaturesinkaondecays