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A measurement of actinide neutron transmutations with accelerator mass spectrometry in order to infer neutron capture cross sections.

机译:用加速器质谱法测量act系元素的中子trans变,以推断中子俘获截面。

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摘要

Improved neutron capture cross section data for transuranic and minor actinides are essential for assessing possibilities for next generation reactors and advanced fuel cycles. The Measurement of Actinide Neutron TRAnsmutation (MANTRA) project aims to make a comprehensive set of energy integrated neutron capture cross section measurements for all relevant isotopes from Th to Cf. The ability to extract these cross sections relies on the use of Accelerator Mass Spectrometry (AMS) to analyze isotopic concentrations in samples irradiated in the Advanced Test Reactor (ATR).;The AMS measurements were performed at the Argonne Tandem Linear Accelerator System (ATLAS) and required a number of key technical developments to the ion source, accelerator, and detector setup. In particular, a laser ablation material injection system was developed at the electron cyclotron resonance ion source. This system provides a more effective method to produce ion beams from samples containing only 1% actinide material and offers some benefits for reducing cross talk in the source.;A series of four actinide measurements are described in this dissertation. These measurements represent the most substantial AMS work attempted at ATLAS and the first results of the MANTRA project. Isotopic ratios for one and two neutron captures were measured in each sample with total uncertainties around 10%. These results can be combined with a MCNP model for the neutron fluence to infer actinide neutron capture cross sections.
机译:改进的超铀和次minor系元素的中子俘获截面数据对于评估下一代反应堆和先进燃料循环的可能性至关重要。 of系元素中子迁移性测量(MANTRA)项目旨在为Th至Cf的所有相关同位素进行一套综合的能量集成中子俘获截面测量。提取这些横截面的能力取决于使用加速器质谱(AMS)分析在高级测试反应堆(ATR)中辐照的样品中的同位素浓度。; AMS测量是在Argonne串联线性加速器系统(ATLAS)上进行的并需要对离子源,加速器和检测器设置进行多项关键技术开发。特别地,在电子回旋共振离子源处开发了激光烧蚀材料注入系统。该系统为从仅含1%act系元素物质的样品产生离子束提供了一种更有效的方法,并为减少源中的串扰提供了一些好处。;本论文介绍了一系列四个of系元素的测量。这些测量代表了ATLAS尝试的最重要的AMS工作以及MANTRA项目的最初结果。在每个样品中测量一个和两个中子俘获的同位素比率,总不确定度约为10%。这些结果可以与中子注量的MCNP模型相结合,以推断act系元素中子俘获截面。

著录项

  • 作者

    Bauder, William K.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Nuclear physics and radiation.;Physics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 169 p.
  • 总页数 169
  • 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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