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Partial-Wave Analysis of $\gamma p \rightarrow K^+ \Lambda$ using a multichannel framework

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arxiv 1804.07422 v3 pith:P5OOZ3US submitted 2018-04-20 nucl-ex nucl-th

classification nucl-exnucl-th
keywords gammalambdaanalysisenergiespartial-wavepredictionsreactionresonances
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Results from a partial-wave analysis of the reaction $\gamma p \rightarrow K^+ \Lambda$ are presented. The reaction is dominated by the $S_{11}(1650)$ and $P_{13}(1720)$ resonances at low energies and by $P_{13}(1900)$ at higher energies. There are small contributions from all amplitudes up to and including $G_{17}$, with $F_{17}$ necessary for obtaining a good fit of several of the spin observables. We find evidence for $P_{11}$(1880), $D_{13}$(2120), and $D_{15}$(2080) resonances, as well as a possible $F_{17}$ resonance near 2300 MeV, which is expected from quark-model predictions. Some predictions for $\gamma n \to K^0 \Lambda$ are also included.

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  1. 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

    hep-ph 2025-01 conditional novelty 6.0 of 10

    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* resonan...

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