arXiv · nucl-th/0305002
Spin effects and baryon resonance dynamics in phi-meson photoproduction at few GeV
Abstract
The diffractive $ϕ$-meson photoproduction amplitude is dominated by the Pomeron exchange process and contains the terms that govern the spin-spin and spin-orbital interactions. We show that these terms are responsible for the spin-flip transitions at forward photoproduction angles and appear in the angular distributions of $ϕ\to K^+K^-$ -decay in reactions with unpolarized and polarized photon beams. At large momentum transfers, the main contribution to the $ϕ$-meson photoproduction is found to be due to the excitation of nucleon resonances. Combined analysis of $ω$ and $ϕ$ photoproduction indicates strong OZI-rule violation in $ϕNN^*$ - couplings. We also show that the spin observables are sensitive to the dynamics of $ϕ$-meson photoproduction at large angles and could help distinguish different theoretical models of nucleon resonances. Predictions for spin effects in $ϕ$-meson photoproduction are presented for future experimental tests.
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A. I. Titov, T. -S. H. Lee. 2003-05-02. Spin effects and baryon resonance dynamics in phi-meson photoproduction at few GeV. https://doi.org/10.1103/physrevc.67.065205
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