Cross sections for neutron-induced reactions from surrogate data: revisiting the Weisskopf-Ewing approximation for and reactions
arXiv:2102.03452 · doi:10.1103/PhysRevC.107.044612
Abstract
Earlier work has demonstrated that cross sections for neutron-induced fission and radiative neutron capture can be determined from a combination of surrogate reaction data and theory. For the fission case, it was shown that Weisskopf-Ewing approximation, which significantly simplifies the implementation of the surrogate method, can be employed. Capture cross sections cannot be obtained, and require a detailed description of the surrogate reaction process. In this paper we examine the validity of the Weisskopf-Ewing approximation for determining unknown and cross sections from surrogate data. We find that peak cross sections can be estimated using the Weisskopf-Ewing approximation, but the shape of the and cross sections, especially for low neutron energies, cannot be reliably determined without accounting for the angular-momentum differences between the neutron-induced and surrogate reaction. To obtain reliable and cross sections from surrogate reaction data, a detailed description of the surrogate reaction mechanisms is required. To do so for the compound-nucleus energies and decay channels relevant to these reactions, it becomes necessary to extend current modeling capabilities.
16 pages, 10 figures
References in corpus (12)
- Analysis of possible systematic errors in the Oslo method
- Toward a complete theory for predicting inclusive deuteron breakup away from stability
- Novel Techniques for Constraining Neutron-Capture Rates Relevant for r-Process Heavy-Element Nucleosynthesis
- Optical potentials for the rare-isotope beam era
- Cross sections for neutron capture from surrogate measurements: An examination of Weisskopf-Ewing and ratio approximations
- Verification of the Surrogate Ratio Method
- Determining neutron-capture cross sections via the surrogate reaction technique
- Uncertainty-quantified phenomenological optical potentials for single-nucleon scattering
- Nucleon scattering on actinides using a dispersive optical model with extended couplings
- Isotopically resolved neutron total cross sections at intermediate energies
- Applications of Nuclear Physics
- Derivation of an optical potential for statically deformed rare-earth nuclei from a global spherical potential