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Timing and position response of a block detector for fast neutron time-of-flight imaging

机译:块探测器的时间和位置响应,用于快速中子飞行时间成像

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Our research effort seeks to improve the spatial and timing performance of a block detector made of a pixilated plastic scintillator (EJ-200), first demonstrated as part of Oak Ridge National Laboratory's Advanced Portable Neutron Imaging System. Improvement of the position and time response is necessary to achieve better resolution and contrast in the images of shielded special nuclear material. Time-of-flight is used to differentiate between gamma and different sources of neutrons (e.g., transmission and fission neutrons). Factors limiting the timing and position performance of the neutron detector have been revealed through simulations and measurements. Simulations have suggested that the degradation in the ability to resolve pixels in the neutron detector is due to those interactions occurring near the light guide. The energy deposition within the neutron detector is shown to affect position performance and imaging efficiency. This examination details how energy cuts improve the position performance and degrade the imaging efficiency. Measurements have shown the neutron detector to have a timing resolution of σ=238 ps. The majority of this timing uncertainty is from the depth-of-interaction (DOI) of the neutron which is confirmed by simulations and analytical calculations.
机译:我们的研究工作旨在改善由像素化塑料闪烁体(EJ-200)制成的块探测器的空间和定时性能,该探测器最初是作为橡树岭国家实验室先进便携式中子成像系统的一部分进行演示的。必须改善位置和时间响应,才能在被屏蔽的特殊核材料的图像中获得更好的分辨率和对比度。飞行时间用于区分伽马射线和中子的不同来源(例如,传输和裂变中子)。通过模拟和测量已经揭示了限制中子探测器的定时和位置性能的因素。模拟表明,中子探测器分辨像素的能力下降是由于在光导附近发生的相互作用。显示中子探测器内的能量沉积会影响位置性能和成像效率。这项检查详细介绍了能量削减如何改善位置性能并降低成像效率。测量表明中子探测器的定时分辨率为σ= 238 ps。这种定时不确定性的大部分来自中子的相互作用深度(DOI),这是通过模拟和分析计算确定的。

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