arXiv · 2103.16865
Investigation of multi-step effects for proton inelastic scattering to the $2^{+}_{1}$ state in $^6$He
Abstract
Multi-step effects between bound, resonant, and non-resonant states have been investigated by the continuum-discretized coupled-channels method (CDCC). In the CDCC, a resonant state is treated as multiple states fragmented in a resonance energy region, although it is described as a single state in usual coupled-channel calculations. For such the fragmented resonant states, one-step and multi-step contributions to the cross sections should be carefully discussed because the cross sections obtained by the one-step calculation depend on the number of those states, which corresponds to the size of the model space. To clarify the role of the multi-step effects, we propose the one-step calculation without model-space dependence for the fragmented resonant states. Furthermore, we also discuss the multi-step effects between the ground, $2^{+}_{1}$ resonant, and non-resonant states in $^6$He for proton inelastic scattering.
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Shoya Ogawa, Takuma Matsumoto, Yoshiko Kanada-En'yo, Kazuyuki Ogata. 2021-03-31. Investigation of multi-step effects for proton inelastic scattering to the $2^{+}_{1}$ state in $^6$He. https://arxiv.org/abs/2103.16865
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