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A semiconductor-based neutron detection system for planetary exploration

机译:基于半导体的中子探测系统,用于行星探测

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We explore the use of microstructured semiconductor neutron detectors (MSNDs) to map the ratio between thermal neutrons and higher energy neutrons. The system consists of alternating layers of modular neutron detectors (MNDs), each comprising arrays of twenty-four MSNDs, and high-density polyethylene moderators (HDPE) with gadolinium shielding to filter between thermal neutrons and higher energy neutrons. We experimentally measured the performance of three different configurations and demonstrated that the sensor system prototypes detect and differentiate thermal and epithermal neutrons. We discuss future planetary exploration applications of this compact, semiconductor-based low-energy neutron detection system.
机译:我们探索使用微结构半导体中子探测器(MSND)来绘制热中子与高能中子之间的比例。该系统由交替的模块化中子探测器(MND)层组成,每个探测器包括24个MSND阵列,以及带有g屏蔽层的高密度聚乙烯减速器(HDPE),可在热中子和高能中子之间进行过滤。我们通过实验测量了三种不同配置的性能,并证明了传感器系统原型可以检测并区分热中子和超热中子。我们讨论了这种紧凑的,基于半导体的低能中子探测系统在未来行星探测中的应用。

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