arXiv:0912.4158·v1·Nuclear Theory
The unexpected role of D waves in low-energy neutral pion photoproduction
Abstract
It has been commonly assumed that low-energy neutral pion photoproduction from the proton can be described accounting only for S and P waves, and that higher partial waves are irrelevant. We have found that this assumption is not correct and that the inclusion of D waves is necessary to obtain a reliable extraction of the multipole from experimental data. This is due in large measure to the spontaneous breaking of chiral symmetry in QCD which leads to very small S-wave contributions. This makes the usual partial wave expansion less accurate and although D waves are small, their contribution is enhanced through the interference with P waves, which compromises the S-wave extraction from data if D waves are not taken into account. In our work we have used Heavy Baryon Chiral Perturbation Theory to one loop, and up to , to account for the S and P waves, while D waves are added in an almost model-independent way using standard Born terms and vector mesons. We also show that higher partial waves do not play an important role.
Comments: Talk presented in the 6th International Workshop on Chiral Dynamics, July 6-10 2009, Bern, Switzerland. To be published in Proceedings of Science. Uses class Pos.cls (included). 6 pages and 3 figures