A tree-level effective Lagrangian model with Delta(1232), N*(1520), and N*(1650) reproduces the LEPS2/BGOegg gamma p to pi0 pi0 p data, assigning Delta(1232) to s-channel nucleon-pole production and the two N* resonances to t-channel rho exchange.
Lambda(1520) photoproduciton off the proton target with Regge contributions
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abstract
We investigate the Lambda(1520,3/2^-)=Lambda* photoproduction off the proton target with the Regge contributions to go beyond the resonance region, in addition to the tree-level Born terms consisting of the s, t, and u channels, and contact term. For this purpose, the Reggeized propagators for the K and K* exchanges in the t channel are employed in a gauge-invariant manner. We also take into account the contribution from a nucleon resonance D_{13}(2030). We compute the angular and energy dependences of the production process, including polarization observables, such as the photon-beam asymmetry and the polarization-transfer coefficients, resulting in good qualitative agreement with current experimental data. It turns out that the Regge contributions are necessary to explain the high-energy data beyond E_{gamma}~4 GeV especially for the angular dependences in the forward-scattering region. On the contrary, the polarization observables are insensitive to the Regge contributions due to the contact-term dominance and gauge invariance. We also compute the K^{-}-angle distribution function in the Gottfried-Jackson frame, using the polarization-transfer coefficients in the z direction. It shows nontrivial theta and E_{gamma} dependences in the forward-scattering region.
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Roles of $\Delta(1232)$, $N^*(1520)$, and $N^*(1650)$ resonances in $\gamma p\to \pi^0 \pi^0 p$ reaction within an effective Lagrangian approach
A tree-level effective Lagrangian model with Delta(1232), N*(1520), and N*(1650) reproduces the LEPS2/BGOegg gamma p to pi0 pi0 p data, assigning Delta(1232) to s-channel nucleon-pole production and the two N* resonances to t-channel rho exchange.