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Neutron spectroscopy of an accelerator based lithium-7(p,n) neutron source with a helium-3 ionization chamber.

机译:具有氦3离子化室的基于加速器的锂7(p,n)中子源的中子光谱。

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摘要

Significant discrepancies had been identified by many research groups worldwide between calculated and measured neutron doses from the 7Li(p,n) accelerator based neutron source, and therefore precise characterization of the source was needed. In this work neutron spectra from the 7Li(p,n) source were measured with a 3He ion chamber in the incident proton energy range from 1.95 to 2.3 MeV. The 3He detector is hypersensitive to slow neutrons, so a time-of-flight based slow neutron rejection acquisition system was built and tested. The system is based on an electrostatic proton chopper and an acquisition system working in coincidence mode. The response function of the 3He was extended down to 30 keV neutron energy and the collected neutron spectra were unfolded using two methods: van Cittert iterative algorithm with Jansson constraint, and a regularized constrained inversion. Theoretical neutron spectra emitted by the 7Li(p,n) source were calculated and compared with experimental unfolded spectra, as well as with results of the Monte Carlo simulations of the lithium target assembly and the walls of the experimental area. Using fluence to kerma conversion coefficients, the neutron dose was calculated and compared with results obtained from an independent experiment using the microdosimetric technique with a tissue equivalent proportional counter. Total neutron yield of the 7Li(p,n) reaction was measured using induced activity of 7Be. Results showed a negative energy offset of the incident proton beam between 50 and 58 keV with respect to the generating voltmeter indication of the accelerator terminal. Shapes of the measured neutron spectra showed significant moderation originating from neutron scattering on the lithium target assembly and walls of the experimental area. When accounting for this offset, neutron yields showed an agreement with calculated values within 22 % for 1.95 MeV and within approximately 7 % for higher proton energies.
机译:全球许多研究小组已经确定了基于7Li(p,n)加速器的中子源在计算和测量的中子剂量之间存在显着差异,因此需要对源进行精确表征。在这项工作中,使用3He离子室测量了7Li(p,n)源的中子光谱,其入射质子能量范围为1.95至2.3 MeV。 3He探测器对慢中子非常敏感,因此建立并测试了基于飞行时间的慢中子排斥采集系统。该系统基于静电质子斩波器和以重合模式工作的采集系统。将3He的响应函数扩展到30 keV中子能量,并使用两种方法展开收集的中子谱:具有Jansson约束的van Cittert迭代算法和正则约束反演。计算了7Li(p,n)源发出的理论中子光谱,并将其与实验未折叠光谱以及锂靶组件和实验区域壁的蒙特卡罗模拟结果进行了比较。使用能量通量至比释动能转换系数,计算中子剂量,并将其与使用具有组织当量比例计数器的微剂量技术从独立实验获得的结果进行比较。使用7Be的诱导活性测量7Li(p,n)反应的总中子产率。结果表明,相对于加速器端子的生成电压表指示,入射质子束在50至58 keV之间的负能量偏移。测得的中子光谱的形状显示出显着的适度,该中度源自锂靶组件和实验区域壁上的中子散射。考虑到这一偏移量后,中子产率与1.95 MeV的计算值在22%之内,而对于更高质子能量的计算值在约7%之内,具有一致性。

著录项

  • 作者

    Matysiak, Witold.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Physics Radiation.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:10

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