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首页> 外文期刊>Annals of nuclear energy >Prediction of fission mass-yield distributions based on cross section calculations
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Prediction of fission mass-yield distributions based on cross section calculations

机译:基于截面计算的裂变质量-收益率分布预测

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For the first time, fission mass-yield distributions have been predicted based on an extended statistical model for fission cross section calculations. In this model, the concept of the multi-modality of the fission process has been incorporated. The three most dominant fission modes, the two asymmetric standard Ⅰ (S1) and standard Ⅱ (S2) modes and the symmetric superlong (SL) mode are taken into account. De-convoluted fission cross sections for S1, S2 and SL modes for ~(235,238)U(n, f) and ~(237)Np(n, f), based on experimental branching ratios, were calculated for the first time in the incident neutron energy range from 0.01 to 5.5 MeV providing good agreement with the experimental fission cross section data. The branching ratios obtained from the modal fission cross section calculations have been used to deduce the corresponding fission yield distributions, including mean values also for incident neutron energies hitherto not accessible to experiment.
机译:第一次,基于用于裂变截面计算的扩展统计模型,预测了裂变质量-收益分布。在该模型中,已纳入了裂变过程的多模式概念。考虑了三种最主要的裂变模式,两种非对称标准Ⅰ(S1)和标准Ⅱ(S2)模式以及对称超长(SL)模式。根据实验分支比,首次计算了〜(235,238)U(n,f)和〜(237)Np(n,f)的S1,S2和SL模式的去卷积裂变截面。入射中子能量范围为0.01到5.5 MeV,与实验裂变截面数据非常吻合。从模态裂变截面计算中获得的分支比已用于推导相应的裂变屈服分布,包括迄今尚无法进行实验的入射中子能量的平均值。

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