Deuteron stripping and pickup involving halo nuclei 11Be and 15C
arXiv:0903.3721 · doi:10.1103/PhysRevC.79.054603
Abstract
Three-body calculations of (d,p) and (p,d) reactions involving one-neutron halo nuclei 11Be and 15C are performed using the framework of Faddeev-type scattering equations. Important effects of the optical potential nonlocality are found improving the description of the experimental data. The obtained values for the neutron spectroscopic factor are consistent with estimations from other approaches.
6 pages, 7 figures, extended version to be published in Phys. Rev. C
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- Adiabatic versus Faddeev for (d,p) and (p,d) reactions
- Reactions of a Be-10 beam on proton and deuteron targets
- Generalized Faddeev equations in the AGS form for deuteron stripping with explicit inclusion of target excitations and Coulomb interaction
- Recent advances in the quantification of uncertainties in reaction theory
- Structure and reactions of 11Be: many-body basis for single-neutron halo
- Systematic analysis of the peripherality of the BeBe transfer reaction and extraction of the asymptotic normalization coefficient of Be bound states
- Structure of the exotic He nucleus from the no-core shell model with continuum
- Separable Representation of Phenomenological Optical Potentials of Woods-Saxon Type
- Evidence of strong dynamic core excitation in C resonant break-up
- The ratio method: a new tool to study one-neutron halo nuclei
- Li in a Three-Body Model with Realistic Forces: Separable vs. Non-separable Approach
- Surface-integral formalism of deuteron stripping
- Status of reaction theory for studying rare isotopes
- Weak sensitivity of three-body () reactions to force models
- Breakup of a nucleus with two weakly bound neutrons on a proton target: Single-scattering approximation
- Relativistic Elastic Differential Cross Sections for Equal Mass Nuclei
- Comparison of Pauli projection and supersymetric transformation methods for three-body nuclear structure and reactions
- Pigmy resonances, transfer, and separable potentials