Soft-QCD Effects In B to gamma gamma Decay: Quark Level Form Factors
Abstract
Soft-QCD effects of quark-level form factors in decay of -mesons via intermediate states, suggested by Ellis et al, are examined in the "Salpeter" model [reinterpreted in terms of the Markov-Yukawa Transversality Principle (MYTP)] when formulated on a covariant light front (null-plane). The gluonic kernel in the infrared regime which generates the constituent mass via standard , is calibrated to both and qqq spectra, meson mass splittings, pion form factor,and other parameters. With this check, an exact evaluation of the vertex form factor (normalized to F(0)=1), gives a multiplicative effect of on the amplitude via D-meson triangle loop, where = is the off-shellness parameter of the exchanged D-meson of mass M and 4-momentum , and is a variables of the (internal)loop integration. Unfortunately, the effect decreases the loop amplitude by a factor of 30 w.r.t. the point hadron value, resulting in a reduction of 3 orders of magnitude in long distance (hadronic) contributions to the decay rate, thus greatly impairing the visibility of such modes. PACS: 11.10.St ; 12.38.Lg ; 13.20.Gd ; 13.40.Hq Keywords: radiative decay; Soft-QCD; Vertex-Fn; Form-factor; Markov-Yukawa-Transversality Principle; Salpeter eq; Cov. light front
Keywords
Cite
@article{arxiv.hep-ph/9902377,
title = {Soft-QCD Effects In B to gamma gamma Decay: Quark Level Form Factors},
author = {A. N. Mitra},
journal= {arXiv preprint arXiv:hep-ph/9902377},
year = {2009}
}
Comments
11 pages, 1 figure, LaTex