Core excitation in the elastic scattering and breakup of Be on protons
arXiv:0704.1586 · doi:10.1103/PhysRevC.76.014611 10.1103/PhysRev.C77.049901
Abstract
The elastic scattering and breakup of Be from a proton target at intermediate energies is studied. We explore the role of core excitation in the reaction mechanism. Comparison with the data suggests that there is still missing physics in the description.
5 pages, 4 figures, submitted to Phys. Rev. C
References in corpus (5)
- Continuum-discretized coupled-channels method for four-body nuclear breakup in He+C scattering
- Transfer to the continuum and Breakup reactions
- Determination of S17 from 8B breakup by means of the method of continuum-discretized coupled-channels
- Core Transitions in the Breakup of Exotic Nuclei
- B(E1) Strengths from Coulomb Excitation of 11Be
Cited by in corpus (12)
- Three-body description of direct nuclear reactions: Comparison with the continuum discretized coupled channels method
- Coupled-channels calculations for nuclear reactions: from exotic nuclei to superheavy elements
- Continuum-Discretized Coupled-Channels calculations with core excitation
- Faddeev-type calculation of three-body nuclear reactions including core excitation
- The total reaction cross section of heavy-ion reactions induced by stable and unstable exotic beams: The low-energy regime
- Role of core excitation in (d,p) transfer reactions
- Probing nucleon-nucleon interactions in breakup of a one-neutron halo Be on a proton target
- Core-excitation effects in transfer reactions: Suppression or enhancement?
- Application of the Lagrange mesh method in continuum-discretized coupled-channels calculations
- Core-excitation effects in three-body breakup reactions studied using the Faddeev formalism
- Open issues in extracting nuclear structure information from the breakup of exotic nuclei
- Reaction Theory and Advanced CDCC