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6-Li Enriched Cs2LiYC16:Ce Based Thermal Neutron Detector Coupled with CMOS Solid-State Photomultipliers for a Portable Detector Unit

机译:6-LI富集CS2LIYC16:Ce基热中子检测器与可便携式探测器单元的CMOS固态光电倍增器耦合

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For detecting neutrons, 3-He tubes provide sensitivity and a unique capability for detecting and discriminating neutron signals from background gamma-ray signals. A solid-state scintillation-based detector provides an alternative to 3-He for neutron detection. A real-time, portable, and low cost thermal neutron detector has been constructed from a ~6Li-enriched Cs_2LiYCl_6:Ce (CLYC) scintillator crystal coupled with a CMOS solid-state photomultiplier (SSPM). These components are fully integrated with a miniaturized multi-channel analyzer (MCA) unit for calculation and readout of the counts and count rates. CLYC crystals and several other elpasolites including Cs_2LiLaCl_6:Ce (CLLC) and Cs_2LiLaBr_6:Ce (CLLB) have been considered for their unique properties in detecting neutrons and discriminating gamma ray events along with providing excellent energy resolution comparable to NaI(T1) scintillators. CLYC's slower rise and decay time for neutrons (70ns and 900ns respectively) relative to a faster rise and decay time for gamma ray events (6ns and 55ns respectively) allows for pulse shape discrimination in mixed radiation fields.' Light emissions from CLYC crystals are detected using an array of avalanche photodiodes referred to as solid-state photomultipliers. SSPMs are binary photon counting devices where the number of pixels activated is directly proportional to the light output of the CLYC scintillator which is proportional to the energy deposited from the radiation field. SSPMs can be fabricated using standard CMOS processes and inherently contain the low noise performance associated with ordinary photomultiplier tubes (PMT) while providing a light and compact solution for portable neutron detectors.
机译:对于检测中子,3-HE管提供灵敏度,可用于检测和区分来自背景伽马射线信号的中子信号的独特能力。固态的基于闪烁的探测器提供了3-HE的替代方案,用于中子检测。实时,便携和低成本的热中子检测器已由〜6LI富集的CS_2LIYCL_6构成:CE(CLYC)闪烁体晶体与CMOS固态光电倍增管(SSPM)耦合。这些组件与小型化的多通道分析仪(MCA)单元完全集成,用于计算和读数计数和计数率。已经考虑了在检测中子和鉴别γ射线事件的独特性质中考虑了包含CS_2LILACL_6:Ce(CLLC)和CS_2LILABR_6:Ce(CLLB)的含量晶体晶体和CE(CLLC)和CS_2LILILABR_6:Ce(CLLB)。 CLYC相对于伽马射线事件(分别分别为伽马射线事件(6ns和55ns)的更快的上升和衰减时间,中子(分别为700ns和900ns)的较慢上升和衰减时间允许在混合辐射场中脉冲形状辨别。使用雪崩光电二极管阵列检测来自CLYC晶体的光排放,被称为固态光电子倍增器。 SSPM是二进制光子计数装置,其中激活的像素的数量与CLYC闪烁体的光输出成比例,其与辐射场中沉积的能量成比例。 SSPM可以使用标准CMOS工艺制造,并且固有地包含与普通光电倍增管(PMT)相关的低噪声性能,同时为便携式中子探测器提供光和紧凑的解决方案。

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