Three-body Faddeev-Alt-Grassberger-Sandhas approach to direct nuclear reactions
arXiv:0901.0875 · doi:10.1103/PhysRevC.79.014606
Abstract
Momentum space three-body Faddeev-like equations are used to calculate elastic, transfer and charge exchange reactions resulting from the scattering of deuterons on 12C and 16O or protons on 13C and 17O; 12C and 16O are treated as inert cores. All possible reactions are calculated in the framework of the same model space. Comparison with previous calculations based on approximate methods used in nuclear reaction theory is discussed.
10 pages, 13 figures, to be published in Phys. Rev. C
References in corpus (5)
- Three-body description of direct nuclear reactions: Comparison with the continuum discretized coupled channels method
- New calculation schemes for proton-deuteron scattering including the Coulomb interaction
- Four-nucleon system with -isobar excitation
- Coulomb force effects in low-energy -deuteron scattering
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- Separable Representation of Proton-Nucleus Optical Potentials
- Examining the effect of nonlocality in transfer reactions
- Li in a Three-Body Model with Realistic Forces: Separable vs. Non-separable Approach
- Surface-integral formalism of deuteron stripping
- Spin observables in three-body direct nuclear reactions
- Benchmarking Faddeev and transfer-to-the-continuum calculations for (p, pN ) reactions
- Relativistic Formulation of Reaction Theory
- Calculation of three-body nuclear reactions with angular-momentum and parity-dependent optical potentials
- Properties of a separable representation of optical potentials
- Uncertainty Quantification in Breakup Reactions