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Microscopic Calculation of Fission Fragment Energies for the 239Pu(nth,f) Reaction
Author(s) -
W. Younes,
D. Gogny
Publication year - 2011
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/1037849
Subject(s) - fission , fragment (logic) , excitation , kinetic energy , observable , nuclear fission , bond cleavage , physics , atomic physics , nuclear physics , function (biology) , excitation function , nucleus , chemistry , nuclear reaction , classical mechanics , quantum mechanics , neutron , mathematics , biochemistry , algorithm , catalysis , evolutionary biology , biology , microbiology and biotechnology
We calculate the total kinetic and excitation energies of fragments produced in the thermal-induced fission of {sup 239}Pu. This result is a proof-of-principle demonstration for a microscopic approach to the calculation of fission-fragment observables for applied data needs. In addition, the calculations highlight the application of a fully quantum mechanical description of scission, and the importance of exploring scission configurations as a function of the moments of the fragments, rather than through global constraints on the moments of the fissioning nucleus. Using a static microscopic calculation of configurations at and near scission, we have identified fission fragments for the {sup 239}Pu (n{sub th}, f) reaction and extracted their total kinetic and excitation energies. Comparison with data shows very good overall agreement between theory and experiment. Beyond their success as a proof of principle, these calculations also highlight the importance of local constraints on the fragments themselves in microscopic calculations

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