arXiv · hep-ph/0408231
Constraining the Unitarity Triangle with B -> V gamma
Abstract
We discuss the exclusive radiative decays $B\to K^{*}γ$, $B \toργ$, and $B\toωγ$ in QCD factorization within the Standard Model. The analysis is based on the heavy-quark limit of QCD. Our results for these decays are complete to next-to-leading order in QCD and to leading order in the heavy-quark limit. Special emphasis is placed on constraining the CKM-unitarity triangle from these observables. We propose a theoretically clean method to determine CKM parameters from the ratio of the $B\toρlν$ decay spectrum to the branching fraction of $B\toργ$. The method is based on the cancellation of soft hadronic form factors in the large energy limit, which occurs in a suitable region of phase space. The ratio of the $B\toργ$ and $B\to K^{*}γ$ branching fractions determines the side $R_{t}$ of the standard unitarity triangle with reduced hadronic uncertainties. The recent Babar bound on $B(B^0\toρ^0γ)$ implies $R_t < 0.81 (ξ/1.3)$, with the limiting uncertainty coming only from the SU(3) breaking form factor ratio $ξ$. This constraint is already getting competitive with the constraint from $B_{s}$-$\bar B_{s}$ mixing. Phenomenological implications from isospin-breaking effects are briefly discussed.
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Stefan W. Bosch, Gerhard Buchalla. 2004-08-20. Constraining the Unitarity Triangle with B -> V gamma. https://doi.org/10.1088/1126-6708%2F2005%2F01%2F035
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