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Comprehensive Bayesian Analysis of Rare (Semi)leptonic and Radiative B Decays
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abstract
The available data on $|\Delta B| = |\Delta S| = 1$ decays are in good agreement with the Standard Model when permitting subleading power corrections of about 15% at large hadronic recoil. Constraining new-physics effects in $\mathcal{C}_7$, $\mathcal{C}_9$, $\mathcal{C}_{10}$, the data still demand the same size of power corrections as in the Standard Model. In the presence of chirality-flipped operators, all but one of the power corrections reduce substantially. The Bayes factors are in favor of the Standard Model. Using new lattice inputs for $B\to K^*$ form factors, the evidence of models with chirality-flipped operators increases, but does not outperform the Standard Model. We use the data to further constrain the hadronic form factors in $B\to K$ and $B\to K^*$ transitions.
Forward citations
Cited by 1 Pith paper
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Exhaustive Model Selection in $b \to s \ell \ell$ Decays: Pitting Cross-Validation against AIC$_c$
An exhaustive model selection over 511 Wilson-coefficient combinations for b to s l l decays finds that all surviving scenarios contain O9 (Delta C9 near -1.1 to -1.4), the only surviving one-operator scenario.
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