Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
2009-03-02
JHEP 0910:026,2009
Physics
High Energy Physics
High Energy Physics - Phenomenology
23 pages, 14 figures, reference updated. Version 3 is significantly modified
Scientific paper
10.1088/1126-6708/2009/10/026
In the event of an observation of neutrinoless double beta decay, a relevant question would be: what lepton number violating physics is responsible for the decay? The exchange of Majorana neutrinos and/or supersymmetric particles may contribute. We point out that measurements of supersymmetric signals at the LHC, including single slepton production, could be used to help bound some supersymmetric processes contributing to neutrinoless double beta decay. LHC information about the supersymmetric spectrum could be combined with Bd-Bd bar mixing data in order to bound a competing neutrinoless double beta decay process involving sbottom exchange.
Allanach Ben C.
Kom Chun-Hay
Päs Heinrich
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