Abstract
We compute perturbative QCD corrections to B → D form factors at leading power in Λ/m b, at large hadronic recoil, from the light-cone sum rules (LCSR) with B-meson distribution amplitudes in HQET. QCD factorization for the vacuum-to-B-meson correlation function with an interpolating current for the D-meson is demonstrated explicitly at one loop with the power counting scheme mc∼O(Λmb). The jet functions encoding information of the hard-collinear dynamics in the above-mentioned correlation function are complicated by the appearance of an additional hard-collinear scale m c, compared to the counterparts entering the factorization formula of the vacuum-to-B-meson correction function for the construction of B → π from factors. Inspecting the next-to-leading-logarithmic sum rules for the form factors of B → Dℓν indicates that perturbative corrections to the hard-collinear functions are more profound than that for the hard functions, with the default theory inputs, in the physical kinematic region. We further compute the subleading power correction induced by the three-particle quark-gluon distribution amplitudes of the B-meson at tree level employing the background gluon field approach. The LCSR predictions for the semileptonic B → Dℓν form factors are then extrapolated to the entire kinematic region with the z-series parametrization. Phenomenological implications of our determinations for the form factors f BD +,0(q 2) are explored by investigating the (differential) branching fractions and the R(D) ratio of B → Dℓν and by determining the CKM matrix element |V cb| from the total decay rate of B → Dμν μ.
| Original language | English |
|---|---|
| Article number | 62 |
| Number of pages | 47 |
| Journal | Journal of High Energy Physics |
| Volume | 2017 |
| Issue number | 6 |
| DOIs | |
| Publication status | Published - 13 Jun 2017 |
Funding
We are grateful to Carleton DeTar and Heechang Na for providing us with the Lattice QCD results presented in [5, 68]. C.D.L is supported in part by the National Natural Science Foundation of China (NSFC) with Grant Nos. 11375208, 11521505, 11621131001 and 11235005, and by the Open Project Program of State Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, Chinese Academy of Sciences with Grant No. Y5KF111CJ. The work of Y.L.S is supported by Natural Science Foundation of Shandong Province, China under Grant No. ZR2015AQ006. Y.M.W acknowledges support from the National Youth Thousand Talents Program, the Youth Hundred Academic Leaders Program of Nankai University, and the NSFC with Grant No. 11675082. This research was also supported in part by the Munich Institute for Astro-and Particle Physics (MIAPP) of the DFG cluster of excellence "Origin and Structure of the Universe".
Austrian Fields of Science 2012
- 103012 High energy physics
Keywords
- Heavy Quark Physics
- Perturbative QCD
- Resummation
- MESON DISTRIBUTION AMPLITUDE
- COLLINEAR EFFECTIVE THEORY
- CB-VERTICAL-BAR
- CONE SUM-RULES
- QUARK MASS
- SEMILEPTONIC DECAYS
- ANOMALOUS DIMENSION
- LARGE RECOIL
- FACTORIZATION
- SYMMETRY