Study of the threshold behavior of the N scattering amplitude through the associated photoproduction of - and -mesons
arXiv:nucl-th/0607019 · doi:10.1142/S0217751X07035501
Abstract
We suggest that the reaction cross section, in the kinematics where the invariant mass in the final state lies between the threshold value (m+m) and the N*(1535) resonance mass, is largely determined by the scattering amplitude close to threshold. The initial photon energy is chosen in the range GeV, in order to reach low (absolute) values of the squared 4-momentum transfer from the initial photon to the final -meson. In these conditions, we expect the t-channel - and -meson exchanges to drive the dynamics underlying the process. We show that the -exchange is the dominating contribution to the cross section while the -exchange is negligible. The - interference is of the order of . The sign of this term is not known and alters significantly our results. Data on the process would be therefore very useful to help unravelling the behavior of the scattering amplitude close to threshold and assessing the possibility of producing -nucleus bound states.
8 pages, 6 figures, Invited talk at MESON 2006, June 9th-13th, 2006, Cracow (Poland)
References in corpus (6)
- Big Bang Nucleosynthesis (in "The Review of Particle Properties" 2004)
- Diffractive -meson photoproduction on proton near threshold
- eta-Nucleon Scattering Length and Effective Range uncertainties
- Spin effects and baryon resonance dynamics in phi-meson photoproduction at few GeV
- Tensor Polarization of the phi meson Photoproduced at High t
- Study of the N scattering amplitude through the associated photoproduction of - and -mesons in the region of the N*(1535) resonance