arXiv:2502.14595·v3·Nuclear Theory
Neutron versus proton scattering on exotic nuclei: the He example
M. S. Khirk (1) · L. V. Grigorenko (1, 2, 3) · D. E. Lanskoy (4) · P. G. Sharov (5) ((1) Flerov Laboratory of Nuclear Reactions, JINR, Dubna, Russia, (2) National Research Nuclear University "MEPhI'', Moscow, Russia, (3) National Research Centre "Kurchatov Institute'', Moscow, Russia, (4) Faculty of Physics, Lomonosov Moscow State University, Moscow, Russia, (5) Institute of Physics in Opava, Silesian University in Opava, Opava, Czech Republic)
Abstract
Neutron scattering on exotic nuclides is a class of processes which can not be studied directly now and in any observable future. Resonance proton scattering of exotic nuclide on a thick target in inverse kinematics can be used to infer the properties of the low-energy neutron scattering of this nuclide assuming the isobaric symmetry. However, the results of such resonance proton scattering reactions are so far analyzed in theoretical approaches (optical, R-matrix models), which are missing important aspects of isospin dynamics, isospin violation in continuum and threshold dynamics. The isospin conserving coupled-channel model (ICM) is proposed, which provides a more reliable basis for understanding of such experimental studies. Qualitatively different phase shifts for the He+ and resonances are predicted by ICM with quite unusual profile for the states. Alternative interpretation of the existing He+ data is proposed. The observable properties of the resonances may be strongly affected by the isobaric-partner states. Crucial importance of studies of the neutron-emission channel for disentangling this possible influence is demonstrated.
Comments: 7 pages, 5 figures