Partial-wave analysis of π-p ηn and π-p K0 reactions

Abstract

We investigate the hadronic reactions πN ηN and πN K via single-energy partial-wave analyses in the c.m. energy range 1080 to 2100 MeV. Our results for the K channel are consistent with prior works; however, for the ηN channel our results differ significantly from previous energy-dependent partial-wave analyses that violate the S-matrix unitarity. We present the first (new) results of ηN and K partial-wave amplitudes constrained by a unitary energy-dependent model. We obtain excellent predictions of integrated cross sections for the two reactions from a global energy-dependent solution. Our results imply that the region just above S11 (1535) has a major contribution from P11 (1710) for π-p ηn, whereas the large peak near 1700 MeV in π-p K0 is dominated by contributions from both S11 (1650) and P11 (1710).

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