Deuteron-nucleus total reaction cross sections up to 1 GeV
arXiv:1608.05503 · doi:10.1080/00223131.2016.1213672
Abstract
Total reaction cross sections of deuteron, , are calculated by a microscopic three-body reaction model. The reaction model has no free adjustable parameter and applicable to reactions at various deuteron incident energies and with both stable and unstable nuclei. The predicted are consistent with those evaluated by a phenomenological optical potential for MeV in which the potential has been parametrized. A simple formula of up to GeV, as a function of , the target mass number and its atomic number , is given.
13 pages, 2 figures, To be published in Journal of Nuclear Science and Technology
References in corpus (3)
Cited by in corpus (4)
- Coupled-channels calculations for nuclear reactions: from exotic nuclei to superheavy elements
- Octupole deformation in the nuclear chart based on the 3D Skyrme Hartree-Fock plus BCS model
- Role of breakup processes in deuteron-induced spallation reactions at 100-200 MeV/nucleon
- Total reaction cross section on a deuteron target and the eclipse effect of the constituent neutron and proton