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- W2003057188 abstract "Abstract Kinetic-energy data for twenty product nuclides in 150 MeV proton fission of 238 U are analyzed in terms of a two-step model of an initial fast cascade interaction, followed by neutron evaporation and/or fission. Momentum transfer is deduced by application of Sugarman's equations in which it is assumed that the momentum component perpendicular to the beam direction is negligible. Momentum transfer is converted to excitation energy by considering the initial interaction to be equivalent to a two-body collision between an incident and stationary nucleon. Excitation energies so obtained represent the value for the average event leading to a specific product measured. The analysis is done in terms of the neutron-proton ratio of the product. It is found that essentially all of the data are consistent with fission occurring according to the unchanged-charge-distribution hypothesis. In some cases post-fission neutron evaporation must be postulated. The excitation energy averaged over observed nuclides was 68 MeV, which differs perhaps significantly from the 87 MeV estimated by Monte Carlo calculations. The discrepancy may result from errors in the method of converting momentum transfer to excitation energy. In general those nuclides formed from events involving high excitation energy also show rising excitation functions with bombarding energy." @default.
- W2003057188 created "2016-06-24" @default.
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- W2003057188 date "1965-05-01" @default.
- W2003057188 modified "2023-09-27" @default.
- W2003057188 title "Recoil properties of fragments in 150-MeV proton fission of uranium-238—II momentum transfer and excitation energy" @default.
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- W2003057188 doi "https://doi.org/10.1016/0022-1902(65)80404-3" @default.
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