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Research on a Neutron Detector With a Boron-Lined Honeycomb Neutron Converter

机译:含硼衬里蜂窝中子转换器的中子探测器的研究

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A new design of the boron-lined gaseous neutron detector composed of a boron-lined honeycomb neutron converter and an electron multiplier is proposed in this paper. The motivation for this research was to decrease the manufacturing difficulty and improve the robustness of the boron-lined gaseous neutron detector. The numerous anode wires in the traditional designs were removed, and the gas electron multiplier (GEM) was used as the electron multiplier. To drive the ionized electrons produced inside the honeycomb structure out to the incident surface of the GEM, a drift electric field was applied inside the holes of the honeycomb structure. The design principles of this detector were discussed. Geant4, Maxwell11, and Garfield9 were used to estimate the neutron absorption efficiency and the electron migration process. A prototype detector was constructed and experimentally evaluated. Both the simulation and experimental results indicate that this detector has the potential to be used in the applications of small angle neutron scattering for scientific research, and to replace the currently used 3He detectors, which have the trouble of very limited supply of 3He gas.
机译:提出了一种由内衬硼蜂窝中子转换器和电子倍增器组成的内衬硼气态中子探测器的新设计。这项研究的目的是降低制造难度并提高含硼气体中子探测器的坚固性。去除了传统设计中的许多阳极丝,并且将气体电子倍增器(GEM)用作电子倍增器。为了将在蜂窝结构内部产生的离子化电子驱出到GEM的入射表面,在蜂窝结构的孔内部施加了漂移电场。讨论了该探测器的设计原理。用Geant4,Maxwell11和Garfield9估算中子吸收效率和电子迁移过程。构建了原型检测器并进行了实验评估。仿真和实验结果均表明,该探测器具有在小角度中子散射科学研究中应用的潜力,并可以替代目前使用的3He探测器,后者存在3He气体供应非常有限的麻烦。

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