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Investigations of radiation damaged arranged scintillating particle composites

机译:辐射损伤排列闪烁粒子复合材料的研究

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摘要

Composites consisting of periodically arranged scintillating particles within an acrylic (poly methyl methacrylate) matrix are excellent templates for the gamma-insensitive detection of fast neutrons. In order to study the impact of radiation damage on acrylic-based scintillating particle composites, we exposed acrylic samples to different doses of fast neutrons up to 119.7 kGy and investigated the change in optical characteristics using optical absorption spectroscopy in the 200-800 nm wavelength range. The experimental results are compared to coupled MCNP6 and optical ray-tracing (FRED) simulations, and qualitative agreement is found. Neutron-induced radiation damage in the acrylic matrix manifests as a red-shift in the ultra-violet absorption edge of the acrylic and a corresponding decrease in the light propagation efficiency, which leads to detector performance degradation. We show for the first time that the effects of radiation damage can be mitigated by the use of wavelength-shifting coatings. We predict that composites with wavelength-shifting coatings can enable neutron detectors with high tolerance against neutron-induced radiation damage, a property that is particularly desired for neutron detection in high radiation environments. nbsp;(C) 2021 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
机译:由丙烯酸(聚甲基丙烯酸甲酯)基质中周期性排列的闪烁粒子组成的复合材料是伽马射线不敏感检测快中子的极好模板。为了研究辐射损伤对丙烯酸基闪烁粒子复合材料的影响,我们将丙烯酸样品暴露于不同剂量的高达119.7 kGy的快中子中,并使用200-800 nm波长范围内的光吸收光谱研究了光学特性的变化。将实验结果与耦合MCNP6和光学光线追踪(FRED)模拟结果进行比较,发现定性一致性。亚克力基体中中子诱导的辐射损伤表现为亚克力紫外吸收边缘发生红移,光传播效率相应降低,导致探测器性能下降。我们首次表明,通过使用波长转移涂层可以减轻辐射损伤的影响。我们预测,具有波长转移涂层的复合材料可以使中子探测器对中子引起的辐射损伤具有很高的耐受性,这是在高辐射环境中进行中子探测特别需要的特性。(C) 2021 年作者。除非另有说明,否则所有文章内容均根据知识共享署名 (CC BY) 许可 (http://creativecommons.org/licenses/by/4.0/) 获得许可。

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