E2 component in subcoulomb breakup of 8B
R. Shyam, I. J. Thompson
Abstract
We calculate the angular distribution and total cross section of the 7Be fragment emitted in the break up reaction of 8B on 58Ni and 208Pb targets at the subCoulomb beam energy of 25.8 MeV, within the non-relativistic theory of Coulomb excitation with proper three-body kinematics. The relative contributions of the E1, E2 and M1 multipolarities to the cross sections are determined. The E2 component makes up about 65% and 40% of the 7Be total cross section for the 58Ni and 208Pb targets respectively. We find that the extraction of the astrophysical S-factor, S17(0), for the 7Be(p,γ)8B reaction at solar energies from the measurements of the cross sections of the 7Be fragment in the Coulomb dissociation of 8B at sub-Coulomb energies is still not free from the uncertainties of the E2 component.
Create a lesson
Related papers
Scale Invariance and Compact Star Matter
Hyun Kyu Lee, Won-Gi Paeng
Optimizing artificial neural networks for dipole strength predictions in light nuclei
Tim Egert, Weiguang Jiang, Sonia Bacca
Coupled-channel scattering from artificial confinement
Tafat Weiss Attia, Itay Horin, Betzalel Bazak
From twelve to three active qubits: Ancilla-recycled rodeo filtering for trapped neutron-proton scattering
Myeong-Hwan Mun, Jubin Park, Myung-Ki Cheoun et al.
Single-particle potentials in asymmetric nuclear matter within the LOCV framework
Zahra Ziarati, Hamidreza Moshfegh
Frontier Questions and Emerging Directions in Nuclear Science and Technology
Yu-Gang Ma