Structure of 8B from elastic and inelastic 7Be+p scattering
arXiv:1303.0331 · doi:10.1103/PhysRevC.87.054617
Abstract
Motivation: Detailed experimental knowledge of the level structure of light weakly bound nuclei is necessary to guide the development of new theoretical approaches that combine nuclear structure with reaction dynamics. Purpose: The resonant structure of 8B is studied in this work. Method: Excitation functions for elastic and inelastic 7Be+p scattering were measured using a 7Be rare isotope beam. Excitation energies ranging between 1.6 and 3.4 MeV were investigated. An R-matrix analysis of the excitation functions was performed. Results: New low-lying resonances at 1.9, 2.5, and 3.3 MeV in 8B are reported with spin-parity assignment 0+, 2+, and 1+, respectively. Comparison to the Time Dependent Continuum Shell (TDCSM) model and ab initio no-core shell model/resonating-group method (NCSM/RGM) calculations is performed. This work is a more detailed analysis of the data first published as a Rapid Communication. [J.P. Mitchell, et al, Phys. Rev. C 82, 011601(R) (2010)] Conclusions: Identification of the 0+, 2+, 1+ states that were predicted by some models at relatively low energy but never observed experimentally is an important step toward understanding the structure of 8B. Their identification was aided by having both elastic and inelastic scattering data. Direct comparison of the cross sections and phase shifts predicted by the TDCSM and ab initio No Core Shell Model coupled with the resonating group method is of particular interest and provides a good test for these theoretical approaches.
15 pages, 19 figures, 3 tables, submitted to PRC
References in corpus (5)
- Ab initio many-body calculation of the 7Be(p,gamma)8B radiative capture
- Ab initio many-body calculations of nucleon scattering on 4He, 7Li, 7Be, 12C and 16O
- Low-lying non-normal parity states in 8B measured by proton elastic scattering on 7Be
- Low-lying states in 8B
- Investigation of the 19Na via resonance elastic scattering