Contribution of the non-resonant mechanism to the double and single differential distributions over the invariant variables in the reaction
arXiv:2203.02388 · doi:10.1103/PhysRevD.105.094029
Abstract
The general analysis of the differential cross section and various polarization observables is performed for the process assuming that the annihilation occurs through the exchange of one virtual photon. The dependence of the differential distributions over invariant variables is derived for the reaction in the so-called non-resonant mechanism, applying the conservation of the hadron electromagnetic currents and the P-invariance of the hadron electromagnetic interaction. The detection in an exclusive experimental set up where the nucleon (or antinucleon) and pion are detected in coincidence is considered. A number of single and double differential distributions have been calculated analytically and numerical estimates are given for the and channels, in the Born (non-resonant) approximation, in the energy range from threshold up to GeV.
29 pages, 9 figures
References in corpus (12)
- New Features in the Electromagnetic Structure of the Neutron
- Measurement of the proton form factor by studying
- Study of psi(2S) Decays to gamma p bar{p}, pi^0 p bar{p} and eta p bar{p} and Search for p bar{p} Threshold Enhancements
- Periodic interference structures in the time-like proton form factor
- Measurement of proton electromagnetic form factors in the time-like region using initial state radiation at BESIII
- The BESIII Physics Programme
- New fit of time-like proton electromagnetic form factors from colliders
- Testing axial and electromagnetic nucleon form factors in time-like regions in the processes and , ,
- Probing the internal structure of baryons
- Study of ee in the Vicinity of the
- Baryonium, a common ground for atomic and high energy physics
- Production from Annihilations