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arXiv:hep-ph/0104059·v1·High Energy Physics — Phenomenology

The influence of the hadronic interaction on the pionium wave functions

A. Gashi🇨🇭 · G.Rasche🇨🇭 · W. S. Woolcock🇦🇺

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Abstract

The influence of the hadronic \pi\pi interaction on the wave functions of pionium (the Coulomb bound \pi^+\pi^- system) at distances less than 10 fm is calculated for s-states with principal quantum numbers n<5. Hadronic \pi\pi potentials are used that reproduce the scattering phase shifts of two-loop chiral perturbation theory. The pionium wave functions \psi_n (r) are obtained by integrating the coupled Schrödinger equations for the (\pi^+\pi^-,\pi^0\pi^0) system. We find that, for r<10 fm, n^{3/2} \psi_n (r) is practically independent of n. From this we conclude that the production rates of the s-states of pionium are proportional to n^{-3}, a result needed for the interpretation of the DIRAC experiment currently running at CERN.

Comments: 9 pages including 2 figures

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