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Prompt fissionγ-ray data from spontaneous fission and the mechanism of fission-fragment de-excitation

机译:从自发裂变和裂变片段去激发机制提示裂变γ射线数据

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摘要

The investigation of prompt γ-ray emission in nuclear fission has a great relevance for the assessment of prompt heat generation in a reactor core and for the better understanding of the de-excitation mechanism of fission fragments. Some years ago experimental data was scarce and available only from a few fission reactions, 233,235U(nth, f), 239Pu(nth, f), and 252Cf(sf). Initiated by a high priority data request published by the OECD/NEA a dedicated prompt fission γ-ray measurement program is being conducted at the Joint Research Centre Geel. In recent years we obtained new and accurate prompt fission γ-ray spectrum (PFGS) characteristics (average number of photons per fission, average total energy per fission and mean photon energy) from 252Cf(sf), 235U(nth, f) and 239,241Pu(nth, f) within 2% of uncertainty. In order to understand the dependence of prompt fission γ-ray emission on the compound nuclear mass and excitation energy, we started a first measurement campaign on spontaneously fissioning plutonium and curium isotopes. Results on PFGS characteristics from 240,242Pu(sf) show a dependence on the fragment mass distribution rather than on the average prompt neutron multiplicity, pointing to a more complex competition between prompt fission γ-ray and neutron emission.
机译:核裂变提示γ射线排放的调查对于评估反应器核心的迅速发热并更好地了解裂变片段的去激发机制的迅速发射具有很大的相关性。几年前,实验数据稀缺,只能从几年裂变反应,233,235U(Nth,F),239Pu(Nth,F)和252CF(SF)中获得。由由OECD / NEA发布的高优先级数据请求启动,在联合研究中心GEEL处进行专用提示偏差γ射线测量程序。近年来,我们获得了新的和准确的迅速裂变γ射线谱(PFGS)特性(平均每裂变的光子数,每次裂变的平均总能量和平均光子能量)从252CF(SF),235U(NTH,F)和239,241 PU(nth,f)在不确定性的2%内。为了了解迅速裂变γ射线排放对复合核质量和激励能量的依赖性,我们在自发性裂变钚和胆汁同位素上开始了第一次测量运动。结果来自240,242Pu(SF)的PFGS特征显示对片段质量分布的依赖,而不是在平均迅速中子多重上,指向迅速裂变γ射线和中子发射之间的更复杂竞争。

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