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Revista mexicana de física

versión impresa ISSN 0035-001X

Resumen

MONTOYA, M.; PAUCAR, O.; OBREGON, A.  y  APONTE, A.. Monte Carlo simulation of the measurement by the 2E technique of the average prompt neutron multiplicity as a function of the mass of fragments from thermal neutron-induced fission of 239Pu. Rev. mex. fis. [online]. 2022, vol.68, n.1.  Epub 23-Jun-2023. ISSN 0035-001X.  https://doi.org/10.31349/revmexfis.68.011201.

Using a Monte Carlo method, we simulate the measurement, by the 2E technique, of the average prompt neutron multiplicity as a function of the mass of fragments from the thermal neutron induced fission of 239Pu. The input data for the simulation, associated with the primary fragment mass (A), consist of the yield (Y), the distribution of the total kinetic energy characterized by its average T K E ¯ and its standard deviation ( σ T K E ), the average prompt neutron multiplicity ( ν - s , a sawtooth approach of experimental data), and the slope of neutron multiplicity against total kinetic energy ( d ν s / d < T K E > ). The output data, associated with the simulated as the fragment mass measured by the 2E technique μ , consist of the yield (y), the distribution of the total kinetic energy characterized by its average t k e ¯ and its standard deviation ( σ t k e ), and the average prompt neutron multiplicity ( ν - μ ). In the mass regions A ≈ 115 and A > 150, ν - μ is higher than ν - s. This result suggests that, in those mass regions, the 2E experimental values associated with the average neutron multiplicity are overestimated, referred to the corresponding to the primary fragments.

Palabras llave : Nuclear fission; fission product yield; prompt neutron multiplicity; fission fragment kinetic energy; plutonium 239.

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