Description of Induced Nuclear Fission with Skyrme Energy Functionals: I. Static Potential Energy Surfaces and Fission Fragment Properties
arXiv:1311.2616 · doi:10.1103/PhysRevC.90.054305
Abstract
Eighty years after its experimental discovery, a microscopic description of induced nuclear fission based solely on the interactions between neutrons and protons and quantum many-body methods still poses formidable challenges. The goal of this paper is to contribute to the development of a predictive microscopic framework for the accurate calculation of static properties of fission fragments for hot fission and thermal or slow neutrons. To this end, we focus on the 239Pu(n,f) reaction and employ nuclear density functional theory with Skyrme energy densities. Potential energy surfaces are computed at the Hartree-Fock-Bogoliubov approximation with up to five collective variables. We find that the triaxial degree of freedom plays an important role, both near the fission barrier and at scission. The impact of the parameterization of the Skyrme energy density on deformation properties from the ground-state up to scission is also quantified. We introduce a general template for the detailed description of fission fragment properties. It is based on the careful analysis of the scission point, using both advanced topological methods and recently proposed quantum many-body techniques. We conclude that an accurate prediction of fission fragment properties at low incident neutron energies, although technologically demanding, should be within the reach of current nuclear density functional theory.
20 pages, 18 figures, 2 tables; Submitted to Physical Review C; Second revised version after comments by the referee
References in corpus (17)
- Axially deformed solution of the Skyrme-Hartree-Fock-Bogolyubov equations using the transformed harmonic oscillator basis (II) HFBTHO v2.00d: a new version of the program
- Brownian shape motion on five-dimensional potential-energy surfaces: Nuclear fission-fragment mass distributions
- Nuclear energy density optimization: Shell structure
- Formation and dynamics of fission fragments
- Corrections to nuclear energies and radii in finite oscillator spaces
- Fission Barriers of Compound Superheavy Nuclei
- Microscopic description of complex nuclear decay: multimodal fission
- Structure properties of Th and Fm fission fragments: mean field analysis with the Gogny force
- Surface Symmetry Energy of Nuclear Energy Density Functionals
- Calculation of fission observables through event-by-event simulation
- Microscopic description of fission in Uranium isotopes with the Gogny energy density functional
- Deformed Coordinate-Space Hartree-Fock-Bogoliubov Approach to Weakly Bound Nuclei and Large Deformations
- Variation after Particle-Number Projection for the HFB Method with the Skyrme Energy Density Functional
- Systematic Study of Fission Barriers of Excited Superheavy Nuclei
- Event-by-event study of prompt neutrons from 239Pu(n,f)
- Fission modes of 256Fm and 258Fm in a microscopic approach
- Origin of the narrow, single peak in the fission-fragment mass distribution for Fm
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- Fission Fragment Decay Simulations with the CGMF Code
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