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NSR database version of May 3, 2024.

Search: Author = A.Knoll

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2014SC23      Phys.Rev. C 90, 054305 (2014)

N.Schunck, D.Duke, H.Carr, A.Knoll

Description of induced nuclear fission with Skyrme energy functionals: Static potential energy surfaces and fission fragment properties

NUCLEAR REACTIONS 239Pu(n, F)240Pu*, E=slow; calculated potential energy surfaces of 240Pu in (q20, q22), (q20, q40) and (q20, q30) planes, HFB energy along the least-energy fission pathway, variation of the total HFB energy as a function of the hexadecapole moment, total energy as a function of the density of particles in the neck, approximate position of the scission point, variation of the light and heavy fragment proton and neutron numbers as a function of triaxiality, joint contour net (JCN) graphs near the scission, fragment densities, Skyrme interaction energy and Direct Coulomb interaction energy between the fission fragments in 240Pu as a function of the number of particles in the neck. Nuclear density functional theory with Skyrme energy densities within the HFB approach and three parameterization SkM*, UNEDF0 and UNEDF1 using DFT solvers HFODD and HFBTHO.

doi: 10.1103/PhysRevC.90.054305
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1979NA10      Nucl.Phys. A329, 127 (1979)

E.Navon, A.Marinov, J.Lichtenstadt, Ch.Drory, R.Benin, A.Knoll, J.Burde, M.Paul

Study of Isobaric Analogue States in 49Sc and Core Excited States in 49Ca

NUCLEAR REACTIONS 48Ca(p, p'), (p, p'), E=5.55-8.4 MeV; measured σ(Ep, θ) σ(Ep', θ). 49Sc deduced resonances L(p), J, π, Γp, Γp', S. Enriched target.

doi: 10.1016/0375-9474(79)90285-9
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