The Pom-CQM model of J/psi photoproduction on the nucleon is extended to predict exclusive J/psi photoproduction cross sections on deuteron, helium-4, oxygen-16, and calcium-40, with relativistic deuteron wave functions and final-state interactions.
Pomeron-LQCD model of $J/\Psi$ photo-production on the nucleon
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abstract
Based on the vector meson dominance assumption, a Hamiltonian model has been developed to investigate $J/\Psi$ photo-production reaction on the nucleon by using the $J/\Psi$-nucleon potential extracted from a lattice QCD calculation of Phys. Rev. D{\bf 82}, 091501 (2010). It is found that the predicted total cross sections are comparable to the recent data of $J/\Psi$ photo-production reaction from Jefferson Laboratory. The model is then extended to include the two-gluon exchange amplitude modeled by Donnachie and Lanshoff within Regge Phenomenology. The resulting Pomeron-LQCD model can then explain the data up to invariant mass $W=$ 300 GeV. Future improvements needed to reduce the uncertainties of the predictions are discussed. The need of an accurate extraction of $J/\Psi$-N potential at short distances from LQCD is illustrated.
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Exclusive $J/\psi$ photo-production on nuclei
The Pom-CQM model of J/psi photoproduction on the nucleon is extended to predict exclusive J/psi photoproduction cross sections on deuteron, helium-4, oxygen-16, and calcium-40, with relativistic deuteron wave functions and final-state interactions.