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Fission fragment mass distributions and total kinetic energy release of 235-uranium and 238-uranium in neutron-induced fission at intermediate and fast neutron energies.

机译:中,快中子能在中子诱发裂变中的235铀和238铀的裂变碎片质量分布和总动能释放。

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摘要

This Ph.D. dissertation describes a measurement of the change in mass distributions and average total kinetic energy (TKE) release with increasing incident neutron energy for fission of 235 U and 238U. Although fission was discovered over seventy-five years ago, open questions remain about the physics of the fission process. The energy of the incident neutron, En, changes the division of energy release in the resulting fission fragments, however, the details of energy partitioning remain ambiguous because the nucleus is a many-body quantum system. Creating a full theoretical model is difficult and experimental data to validate existing models are lacking. Additional fission measurements will lead to higher-quality models of the fission process, therefore improving applications such as the development of next-generation nuclear reactors and defense. This work also paves the way for precision experiments such as the Time Projection Chamber (TPC) for fission cross section measurements and the Spectrometer for Ion Determination in Fission (SPIDER) for precision mass yields.;The dissertation discusses the motivations and underlying theory behind the study of fission. It also contains a description of the detector, a twin Frisch-gridded ionization chamber, and the neutron source at the Los Alamos Neutron Science Center (LANSCE) Weapons Neutron Research (WNR), which provides neutrons from the intermediate to fast region (En= 100's of keV to 100's of MeV). The double energy (2E) analysis procedure is also described, which calculates fragment masses and energies pre- and post-prompt neutron emission. The results of these studies reveal clear structure in the energy-dependent TKE and its variance sigmaTKE for both uranium isotopes that correlate to multi-chance fission in the cross section. A low En turnover in the TKE was observed for 235U which had only been hinted at in previous experiments. Correlated TKE and masses are also presented.
机译:本博士论文描述了随着235 U和238U裂变入射中子能量的增加,质量分布和平均总动能(TKE)释放变化的测量。尽管裂变是在75年前发现的,但关于裂变过程的物理学问题仍然存在悬而未决的问题。入射中子的能量En改变了最终裂变碎片中能量释放的分配,但是,由于原子核是一个多体量子系统,所以能量分配的细节仍然模棱两可。创建完整的理论模型非常困难,并且缺乏用于验证现有模型的实验数据。额外的裂变测量将导致裂变过程的质量更高,从而改善诸如下一代核反应堆和国防等应用的应用。这项工作也为诸如裂隙截面测量的时间投影室(TPC)和精确质量产率的裂变离子测定光谱仪(SPIDER)之类的精密实验铺平了道路。研究裂变。它还包含探测器的描述,双弗里施网格电离室和洛斯阿拉莫斯中子科学中心(LANSCE)武器中子研究(WNR)的中子源,该中子源提供从中间到快速区域的中子(En = keV的100到MeV的100)。还介绍了双能(2E)分析程序,该程序可计算碎片质量和提示前中子发射前后的能量。这些研究的结果表明,两种铀同位素的能量依赖型TKE的结构清晰,其方差sigmaTKE与截面的多机会裂变有关。在235U的TKE中观察到了低的En转化率,这仅在先前的实验中有所暗示。还介绍了相关的TKE和质量。

著录项

  • 作者

    Duke, Dana L.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 High energy physics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:21

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