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Design and Optimisation of a Three Layers Thermal Neutron, Fast Neutron and Gamma-Ray Imaging System

机译:三层热中子,快中子和伽马射线成像系统的设计与优化

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摘要

The design and configuration of a multi-layered imaging system with the ability to detect thermal neutrons, fast neutrons and gamma rays has been developed and its efficacy demonstrated. The work presented here numerically determines the systems efficiency and spatial resolution, using 252Cf and 137Cs as a case study. The novelty of this detection system lies in the use of small form factor detectors in a three-layer design, which utilises neutron elastic scattering and Compton scattering simultaneously. The current configuration consists of 10 mm thick natural lithium glass (GS10) scintillator integrated with a 20 mm thick plastic scintillator (EJ-204) in the first layer, a 15 mm thick lithium glass (GS10) scintillator in the second and a 30 mm thick CsI(Tl) scintillator forming the final layer. Each of these layers is backed with an 8 x 8 silicon photomultiplier diode (SiPM) array. The overall size of the imaging system is 27 mm x 27 mm x 135 mm. MCNPv6.1 and Geant4-10.04 were alternatively used to optimise the overall configuration and to investigate detection modalities. Results show promising performance with high precision source localisation and characterization abilities. Measurements were virtually obtained of two gamma-ray sources within steel enclosures at angles of 15°, 30° and 50° separation in order to test spatial resolution ability of the system. With the current active size of the system and the 8x8 SiPM configuration, the results estimate the spatial resolution to be close to 30°. The ability of the system to characterise and identify sources based on the type and energy of the radiation emitted, has been investigated and results show that for all radiation types the system can identify the source energy within the energy range of typical reported sources in literature.
机译:开发了多层成像系统的设计和配置,具有检测热中子,快节中子和伽马射线的能力,并且表现出效果。这里呈现的作品在数字上使用252CF和137C来确定系统效率和空间分辨率作为案例研究。该检测系统的新颖性在于在三层设计中使用小型系数探测器,其同时利用中子弹性散射和康普顿散射。电流配置由10mm厚的天然锂玻璃(GS10)闪烁体组成,该闪烁体与第一层中的20mm厚的塑料闪烁体(EJ-204)集成,在第二个厚度为15mm厚的锂玻璃(GS10)闪烁体,30mm厚的CSI(TL)闪烁体形成最终层。这些层中的每一个都用8×8硅光电倍增倍数二极管(SIPM)阵列。成像系统的整体尺寸为27mm x 27 mm x 135 mm。 MCNPv6.1和GEANT4-10.04还用于优化整体配置并调查检测方式。结果表明,具有高精度源定位和表征能力的有希望的性能。几乎在钢外壳内的两个伽马射源以15°,30°和50°分离的角度获得测量,以测试系统的空间分辨率。随着系统的电流尺寸和8x8 SIPM配置,结果估计了空间分辨率接近30°。已经研究了系统表征和识别来自发出的辐射的类型和能量的来源的能力,并且结果表明,对于所有辐射型,系统可以识别典型报告的文献中的典型源的能量范围内的源能量。

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