English

Abelian anomaly and neutral pion production

Nuclear Theory 2010-12-24 v1 High Energy Physics - Experiment High Energy Physics - Lattice High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We show that in fully-self-consistent treatments of the pion; namely, its static properties and elastic and transition form factors, the asymptotic limit of the product Q^2 G_{\gamma * \gamma \pi ^0}(Q^2), determined a priori by the interaction employed, is not exceeded at any finite value of spacelike momentum transfer. Furthermore, in such a treatment of a vector-vector contact-interaction one obtains a \gamma * \gamma -> \pi ^0 transition form factor that disagrees markedly with all available data. We explain that the contact interaction produces a pion distribution amplitude which is flat and nonvanishing at the endpoints. This amplitude characterises a pointlike pion bound-state. Such a state has the hardest possible form factors; i.e., form factors which become constant at large momentum transfers and hence are in striking disagreement with completed experiments. On the other hand, interactions with QCD-like behaviour produce soft pions, a valence-quark distribution amplitude that vanishes as ~(1-x)^2 for x~1, and results that agree with the bulk of existing data. Our analysis supports a view that the large-Q^2 data obtained by the BaBar Collaboration is not an accurate measure of the \gamma * \gamma -> \pi ^0 form factor.

Keywords

Cite

@article{arxiv.1009.0067,
  title  = {Abelian anomaly and neutral pion production},
  author = {H. L. L. Roberts and C. D. Roberts and A. Bashir and L. X. Gutierrez-Guerrero and P. C. Tandy},
  journal= {arXiv preprint arXiv:1009.0067},
  year   = {2010}
}

Comments

11 pages, 6 figures