$B\to\pi\pi$ Form Factors from Light-Cone Sum Rules with $B$-meson Distribution Amplitudes
Abstract
We study form factors using QCD light-cone sum rules with -meson distribution amplitudes. These form factors describe the semileptonic decay , and constitute an essential input in and decays. We employ the correlation functions where a dipion isospin-one state is interpolated by the vector light-quark current. We obtain sum rules where convolutions of the -wave form factors with the time-like pion vector form factor are related to universal -meson distribution amplitudes. These sum rules are valid in the kinematic regime where the dipion state has a large energy and a low invariant mass, and reproduce analytically the known light-cone sum rules for form factors in the limit of -dominance with zero width, thus providing a systematics for so-far-unaccounted corrections to transitions. Using data for the pion vector form factor, we estimate finite width-effects and the contribution of excited -resonances to the form factors. We find that these contributions amount up to in the small dipion mass region where they can be effectively regarded as a nonresonant (-wave) background to the transition.
Keywords
Cite
@article{arxiv.1701.01633,
title = {$B\to\pi\pi$ Form Factors from Light-Cone Sum Rules with $B$-meson Distribution Amplitudes},
author = {Shan Cheng and Alexander Khodjamirian and Javier Virto},
journal= {arXiv preprint arXiv:1701.01633},
year = {2017}
}
Comments
28 pages, 3 figures. A few comments added. Version published in JHEP