Ultravisible warped model from flavor triviality and improved naturalness

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A warped extra-dimensional model, where the standard model Yukawa hierarchy is set by UV physics, is shown to have a sweet spot of parameters with improved experimental visibility and possibly naturalness. Upon marginalizing over all the model parameters, a Kaluza-Klein scale of 2.1 TeV can be obtained at 2 sigma (95.4% C. L.) without conflicting with electroweak precision measurements. Fitting all relevant parameters simultaneously can relax this bound to 1.7 TeV. In this bulk version of the Rattazzi-Zaffaroni shining model, flavor violation is also highly suppressed, yielding a bound of 2.4 TeV. Nontrivial flavor physics at the LHC in the form of flavor gauge bosons is predicted. The model is also characterized by a depletion of the third-generation couplings-as predicted by the general minimal flavor violation framework-which can be tested via flavor precision measurements. In particular, sizable CP violation in Delta B = 2 transitions can be obtained, and there is a natural region where B-s mixing is predicted to be larger than B-d mixing, as favored by recent Tevatron data. Unlike other proposals, the new contributions are not linked to Higgs or any scalar exchange processes.
Publisher
AMER PHYSICAL SOC
Issue Date
2011-06
Language
English
Article Type
Article
Citation

PHYSICAL REVIEW D, v.83, no.11

ISSN
1550-7998
DOI
10.1103/PhysRevD.83.115003
URI
http://hdl.handle.net/10203/94601
Appears in Collection
PH-Journal Papers(저널논문)
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