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Single-nucleon removal cross sections on nucleon and nuclear targets
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abstract
The eikonal direct-reaction model, as used in spectroscopic studies of intermediate-energy nucleon-removal reactions on light target nuclei, is considered in the case of a proton target and applied to neutron removal from $^{29}$Ne at 240 MeV/nucleon. The computed cross sections and their sensitivities are compared using an earlier detailed analysis of carbon target data. The nuclear structure input, for the $^{29}$Ne ground-state and $^{28}$Ne final states, is that deduced from the carbon target analysis. The comparisons quantify the sensitivity of the two reactions to the angular momenta and binding energies of the active valence orbitals - showing the carbon target to be relatively more efficient for removals from weakly-bound, low-$\ell$, halo-like orbitals. Probing this sensitivity experimentally would provide useful tests of these predictions and of the model's description of the reaction mechanism.
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Cited by 1 Pith paper
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Proton removal from $^{73,75}$Br to $^{72,74}$Se at intermediate energies
The first inclusive and partial proton-removal cross sections for 72,74Se from 73,75Br beams are reported; total yields are equal within uncertainties and excited-state fragmentation is mapped.
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