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Detecting sub-MeV neutrons in solid plastic scintillator with gamma-ray discrimination

机译:利用伽马射线识别检测固体塑料闪烁体中的亚meV中子

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摘要

We report on recent efforts to design a solid plastic scintillation hodoscope to measure neutron production cross sections at low energies. Our program includes not only the development of the detector itself, but also a set of auxiliary measurements which will help characterize its low-energy response. A novel scintillation counter has been developed to detect sub-MeV neutrons while rejecting gamma-ray backgrounds with good efficiency. The detector uses multiple layers of thin solid scintillator, with optical isolation between the adjacent layers. Incident low-energy neutrons produce ionizing recoil particles which remain within just one of the scintillator layers, while background gamma rays create electrons which most often cross the boundary between layers. By observing the trigger pattern within the layers, most gamma-ray backgrounds can be distinguished from the low-energy neutrons of interest. We report on the results of our Monte Carlo studies of this design, as well as on the operation of a prototype detector unit. We also have undertaken a new measurement of the neutron-proton total cross section below 1 MeV. Calculations of the efficiency for detecting low energy neutrons in plastic scintillator rely on accurate low energy n-p cross sections, yet surprisingly few such data currently exist. New measurements which span the region from 150 to 800 keV neutron (lab) energy are reported and discussed. Additionally, we have measured the light response of BC 418 scintillator for recoil proton energies as low as 100 keV. Recoil protons are produced at a known energy in the scintillator by placing it in a neutron beam and detecting in coincidence the elastically scattered neutrons at fixed angle. Our new results extend the energy range of previous measurements of the light response of solid organic scintillators, and may indicate a significantly modified response at the lowest observed energies.
机译:我们报告了最近在设计固态塑料闪烁体镜以测量低能量下中子产生截面的工作。我们的程序不仅包括探测器本身的开发,还包括一组辅助测量,这些测量将有助于表征其低能响应。已经开发出新颖的闪烁计数器以检测亚MeV中子,同时以良好的效率拒绝伽玛射线背景。检测器使用多层薄固体闪烁体,相邻层之间具有光学隔离。入射的低能中子产生电离的反冲粒子,这些粒子仅保留在一个闪烁体层中,而背景伽马射线产生的电子通常会越过层之间的边界。通过观察各层内的触发模式,可以将大多数伽马射线背景与感兴趣的低能中子区分开。我们报告有关此设计的蒙特卡洛研究的结果,以及原型探测器单元的运行情况。我们还对1 MeV以下的中子-质子总截面进行了新的测量。用于检测塑料闪烁体中低能中子的效率的计算依赖于精确的低能n-p横截面,但是令人惊讶的是,目前很少有此类数据。报告并讨论了跨越150至800 keV中子(实验室)能量区域的新测量结果。此外,我们测量了BC 418闪烁体对低至100 keV的反冲质子能量的光响应。通过在闪烁器中以已知能量产生反冲质子,方法是将其放在中子束中并同时检测固定角度的弹性散射中子。我们的新结果扩展了以前对固体有机闪烁体的光响应进行测量的能量范围,并且可能表明在观察到的最低能量下响应发生了显着变化。

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