Neutron skins probed in proton knockout from neutron-rich nuclei
arXiv:2601.01049 · doi:10.1103/sz51-yf8l
Abstract
Proton-induced quasifree knockout reactions provide a powerful probe of nuclear single-particle structure and reaction dynamics in both stable and neutron-rich nuclei. In this work we develop a unified theoretical framework for the calculation of inclusive (p,2p) and sequential (p,3p) reaction cross sections and fragment momentum distributions at intermediate and relativistic energies. The approach is based on a probabilistic extension of Glauber multiple-scattering theory combined with microscopic nuclear densities obtained from Hartree-Fock-Bogoliubov calculations using Skyrme energy-density functionals. We focus in particular on the sensitivity of total cross sections and longitudinal momentum dispersions to neutron-skin thickness along isotopic chains. Our results indicate that both (p,2p) and (p,3p) reactions exhibit a systematic decrease of cross section and momentum width with increasing neutron excess, reflecting enhanced attenuation and surface bias induced by neutron skins. The effect is significantly stronger for two-proton removal, suggesting that (p,3p) reactions may offer enhanced sensitivity to isovector nuclear structure. These findings establish proton-induced knockout reactions as complementary hadronic probes of neutron skins and the density dependence of the nuclear symmetry energy.
15 pages, 5 figures, published version
References in corpus (12)
- Nuclear symmetry energy probed by neutron skin thickness of nuclei
- Probing Cold Dense Nuclear Matter
- Updated analysis of NN elastic scattering to 3 GeV
- Axially deformed solution of the Skyrme-Hartree-Fock-Bogolyubov equations using the transformed harmonic oscillator basis (II) HFBTHO v2.00d: a new version of the program
- Ni revealed as a doubly magic stronghold against nuclear deformation
- Constraints on Nuclear Symmetry Energy Parameters
- Quenching of single-particle strength from direct reactions with stable and rare-isotope beams
- Peeling off neutron skins from neutron-rich nuclei: Constraints on the symmetry energy from neutron-removal cross sections
- Neutron skins as laboratory constraints on properties of neutron stars and on what we can learn from heavy ion fragmentation reactions
- The relationship of the neutron-skin thickness to the symmetry energy and its slope
- Nuclear fragmentation reactions as a probe of neutron skins in nuclei
- Benchmarking Faddeev and transfer-to-the-continuum calculations for (p, pN ) reactions