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Using Backscattering to Enhance Efficiency in Neutron Detectors

机译:利用后向散射提高中子探测器的效率

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摘要

The principle of using strongly scattering materials to recover efficiency in detectors for neutron instruments, via backscattering of unconverted thermal neutrons, is discussed in general. The feasibility of the method is illustrated through Geant4-based simulations involving thermal neutrons impinging on a specific setup with a layer of polyethylene placed behind a single-layered boron-10 thin-film gaseous detector. The results show that detection efficiencies can be as much as doubled in the most ideal scenario, but with associated adverse contributions to spatial and timing resolutions of, respectively, centimeters and tens of microseconds. Potential mitigation techniques to contain the impact on resolution are investigated and are found to alleviate the issues to some degree, at a cost of reduced gain in efficiency.
机译:总体上讨论了使用强散射材料通过未转换的热中子的反向散射来恢复中子仪器探测器效率的原理。通过基于Geant4的模拟说明了该方法的可行性,该模拟涉及热中子撞击在特定的设置上,并在单层硼10薄膜气态检测器后面放置了一层聚乙烯。结果表明,在最理想的情况下,检测效率可以提高一倍,但分别对厘米和数十微秒的空间和定时分辨率产生不利影响。对抑制分辨率影响的潜在缓解技术进行了研究,发现该技术在一定程度上缓解了问题,但代价是效率得到了降低。

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