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Predicting $B -> \rho \gamma$ and $B_s -> \rho \gamma$ using holographic AdS/QCD Distribution Amplitudes for the $\rho$ meson

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arxiv 1212.4074 v2 pith:NTTFS2OX submitted 2012-12-17 hep-ph

classification hep-ph
keywords circgammarightarrowamplitudesdistributionholographicleadingmeson
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We derive holographic AdS/QCD Distribution Amplitudes for the transversely polarised $\rho$ meson and we use them to predict the branching ratio for the decays $\bar B^\circ\rightarrow \rho^\circ \gamma$ and $\bar B^\circ_s\rightarrow \rho^\circ \gamma$ beyond leading power accuracy in the heavy quark limit. For $\bar B^\circ\rightarrow \rho^\circ \gamma$, our predictions agree with those generated using Sum Rules (SR) Distribution Amplitudes and with the data from the BaBar and Belle collaborations. In computing the weak annihilation amplitude which is power-supressed in $\bar B^\circ\rightarrow \rho^\circ \gamma$ but is the leading contribution in $\bar{B}^{\circ}_s\rightarrow \rho^\circ \gamma$, we find that, in its present form, the AdS/QCD DA avoids the end-point divergences encountered with the SR DA .

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  1. Vector mesons leading-twist longitudinal distribution amplitudes and related semi-leptonic decays within QCD sum rules

    hep-ph 2026-07 conditional novelty 4.0 of 10

    New QCD sum-rule calculation gives ξ-moments up to tenth order and PLP-model distribution amplitudes for ρ, K*, φ, which are then used to recalculate D_(s)→V semileptonic observables.

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