Hadro- and photo-production of η' in quasi-free proton and neutron processes

  • The η' photoproduction process on quasi-free proton and neutron and the reaction NN→η′NN are investigated within a relativistic effective Lagrangian approach to hadronic interactions. Resonances with spins 1/2 and 3/2 are considered together with the nucleonic and t-channel meson-exchange current contributions. In photoproduction processes, the S11resonance is found to be responsible for the sharp rise of the cross sections near threshold. In pp→η′pp, it is found that the S11resonance dominates the total cross section over the entire energy region considered. The spin observables, in particular the beam and target asymmetries, are shown to be very sensitive to the reaction mechanism and will help impose more stringent constraints on the model parameters.

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HUANG Fei. Hadro- and photo-production of η' in quasi-free proton and neutron processes[J]. Chinese Physics C, 2009, 33(12): 1291-1295. doi: 10.1088/1674-1137/33/12/040
HUANG Fei. Hadro- and photo-production of η' in quasi-free proton and neutron processes[J]. Chinese Physics C, 2009, 33(12): 1291-1295. doi:10.1088/1674-1137/33/12/040 shu
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Received: 2009-08-07
Revised: 1900-01-01
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    Hadro- and photo-production of η' in quasi-free proton and neutron processes

      Corresponding author:HUANG Fei,

      Abstract:

      The η' photoproduction process on quasi-free proton and neutron and the reaction NN→η′NN are investigated within a relativistic effective Lagrangian approach to hadronic interactions. Resonances with spins 1/2 and 3/2 are considered together with the nucleonic and t-channel meson-exchange current contributions. In photoproduction processes, the S11resonance is found to be responsible for the sharp rise of the cross sections near threshold. In pp→η′pp, it is found that the S11resonance dominates the total cross section over the entire energy region considered. The spin observables, in particular the beam and target asymmetries, are shown to be very sensitive to the reaction mechanism and will help impose more stringent constraints on the model parameters.

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