Rare B decays in Warped Extra Dimension Model with Custodial Symmetry Cheng Li Theory Division, IHEP...
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Transcript of Rare B decays in Warped Extra Dimension Model with Custodial Symmetry Cheng Li Theory Division, IHEP...
![Page 1: Rare B decays in Warped Extra Dimension Model with Custodial Symmetry Cheng Li Theory Division, IHEP Collaborate with Cai-Dian Lϋ 1.](https://reader036.fdocuments.in/reader036/viewer/2022062806/56649cc35503460f9498b679/html5/thumbnails/1.jpg)
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Rare B decays in Warped Extra Dimension Model with Custodial Symmetry
Cheng LiTheory Division, IHEP
Collaborate with Cai-Dian Lϋ
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Outline Introduction Effective Hamiltonian and Branching
Ratios Results and Analysis Summary and Outlook
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Motivation
Rare B-decays induced by flavor changing neutral currents provide a valuable search for physics beyond the standard model indirectly.
Randall-Sundrum model, as a realistic model of EW symmetry breaking, provide an ambitious proposal to explain hierarchy between the Planck and EW scale, meanwhile one can naturally generate the hierarchies in the fermion mass spectrum and mixing angle.
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Introduction to the Model
The metric is:
The hierarchy problem is then solved by noting that generic mass scales M in the 5D theory are scaled down to on the IR brane.
The bulk symmetry is:
and the Figure of the Model is
PRL.83,3370(1999)
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We need a Higgs bidoublet and appropriate boundary conditions
JHEP09,064(2009)
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Flavor Structure
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Feynman Diagram for the Process
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Effective Hamiltonian
Integrating out the particles above scale , we arrive at the effective Hamiltonian
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Neutral Current
In this model we have to consider three gauge bosons with the corresponding mass eigenstates , and .
The main results can be briefly summarized as follows: the EW tree level contributions to
observables mediated by the new weak gauge boson .
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Branching Ratios
Important formulae for
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Important formulae for
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Results and Analysis
Forward Backward Asymmetry:
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We have the opposite sign within SM, where the effective Hamiltonian is
7C
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the NP effects in rare B decays are generally small (O(10%)) in the model
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The SuppressionInduced by the Custodial Protection
We have
Taking into account the symmetry breaking effects on the UV brane, the custodial protection mechanism is not exact anymore, but still powerful enough to suppress by two orders of magnitude.
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Summary and Outlook
New physics contributions to rare K and B decay, especially in transitions, are governed by tree level contributions from boson in the warped extra dimension model with custodial symmetry, which is consistent with CDF data and will be test in LHCb.
The rare B decays can be used as a ideal platform for testing physics beyond SM in the LHC era.
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Thank You!