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Potential of light-cone sum rules without semiglobal quark-hadron duality

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arxiv 2404.01290 v3 pith:BZDJZ6LA submitted 2024-04-01 hep-ph

Potential of light-cone sum rules without semiglobal quark-hadron duality

classification hep-ph
keywords factorsformlight-conepredictionssemiglobaldualityerrormeson
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This work addresses the calculation of local form factors involved in the theoretical predictions of semileptonic $B$-meson decays at low $q^2$. We present a new approach to the method of QCD light-cone sum rule with $B$-meson light-cone distribution amplitudes. In our strategy, we bypass the semiglobal quark-hadron duality (QHD) approximation which usually contributes an unknown and potentially large systematic error to the prediction of form factors. We trade this improvement for an increased reliance on higher-order contributions in perturbation theory. Unlike the systematic error from semiglobal QHD, truncation errors are assessable and systematically improvable, hence allowing robust predictions of form factors. For the transitions $B\to \pi,\rho,K^{(*)}$, our predictions agree with the literature for all form factors at $q^2=0$.

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    An improved moment sum rule incorporating duality and dependence conditions uniquely fixes the continuum threshold and ground-state mass without ad-hoc OPE/pole criteria, matching prior Laplace results for a light tetraquark.