Rescattering Effect and Near Threshold Enhancement of System
arXiv:0806.4661 · doi:10.1103/PhysRevD.78.054022
Abstract
We study the observed enhancement of a system near the threshold in the process and . From early studies the enhancement can be explained by final state interactions, which are in general taken into account with some potential models. In this work we offer a simple approach within quantum field theory to explain the observed enhancement. We point out that among different final state interactions the rescattering in a system though exchange of is the most important. The effects of the rescattering is completely fixed by the well-known coupling . Our results show that the enhancement in and can be well described with the rescattering effects.
11 pages with 4 figures
References in corpus (7)
- Unexpected features of e+e-->ppbar and e+e-->lambda-lambdabar cross sections near threshold
- On the strong energy dependence of the e^+e^- to ppbar amplitude near threshold
- ppbar enhancement in B and J/Psi decay
- Partial waves of baryon-antibaryon in three-body B meson decay
- Baryonium, tetra-quark state and glue-ball in large N_c QCD
- Near threshold ppbar enhancement in the J/psi -> omega ppbar decay
- Final State Interaction Effects in the Process near Threshold
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- Looking for bound states and resonances in the system
- Coupled-channel analysis of the near-threshold cross sections
- Baryons and baryoniums in the perspective of QCD sum rules
- Electromagnetic form factors of hadrons in the time-like region