Phenomenological analysis of near threshold periodic modulations of the proton timelike form factor
arXiv:1510.06338 · doi:10.1103/PhysRevC.93.035201
Abstract
We have recently highlighted the presence of a periodically oscillating 10 \% modulation in the BABAR data on the proton timelike form factors, in the reaction . Here we deepen our previous data analysis, and confirm that in the case of several standard parametrizations it is possible to write the form factor in the form , where is a parametrization expressing the long-range trend of the form factor (for ranging from the threshold to 36 GeV), and is a function of the form , where is the relative momentum of the final pair. Error bars allow for a clean identification of the main features of this modulation for 10 GeV. Assuming this oscillatory modulation to be an effect of final state interactions between the forming proton and the antiproton, we propose a phenomenological model based on a double-layer imaginary optical potential. This potential is flux-absorbing when the distance between the proton and antiproton centers of mass is 1.7-1.8 fm and flux-generating when it is 1.7-1.8 fm. The main features of the oscillations may be reproduced with some freedom in the potential parameters, but the transition between the two layers must be sudden (0-0.2 fm) to get the correct oscillation period. The flux-absorbing part of the interaction is due to the annihilation of pairs into multi-meson states. We interpret the flux-creating part of the potential as due to the creation of a -ranged state when the virtual photon decays into a set of current quarks and antiquarks, including heavy ones, that may exist for a short time. The decay of these large mass states leads to an intermediate stage regeneration of the channel.
25 pages, 8 figures - revised version - new section 5 with extended discussion
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Cited by in corpus (19)
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