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- W2078633135 abstract "We have implemented a Monte Carlo simulation of fission fragment statistical decay by sequential neutron emission. Within this approach, we calculate the center-of-mass and laboratory prompt neutron energy spectra as a function of the mass of fission fragments and integrated over the whole mass distribution. We also assess the prompt neutron multiplicity distribution $P(ensuremath{nu})$, both the average number of emitted neutrons and the average neutron energy as a function of the mass of the fission fragments [respectively $overline{ensuremath{nu}}(A)$ and $ensuremath{langle}ensuremath{varepsilon}ensuremath{rangle}(A)$]. We investigate the average total energy available for prompt ensuremath{gamma}-ray emission as a function of the mass of the fission fragments ${overline{E}}_{ensuremath{gamma}}(A)$. We also calculate neutron-neutron correlations such as the full matrix $overline{ensuremath{nu}}(A,mathrm{TKE})$ as well as correlations between neutron energies. Two assumptions for partitioning the total available excitation energy among the light and heavy fragments are considered. Results are reported for the neutron-induced fission of $^{235}mathrm{U}$ (at neutron energy of 0.53 MeV) and for the spontaneous fission of $^{252}mathrm{Cf}$." @default.
- W2078633135 created "2016-06-24" @default.
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- W2078633135 date "2005-08-05" @default.
- W2078633135 modified "2023-09-23" @default.
- W2078633135 title "Monte Carlo approach to sequential neutron emission from fission fragments" @default.
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- W2078633135 doi "https://doi.org/10.1103/physrevc.72.024601" @default.
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