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Nanoparticles-loaded plastic scintillators for fast/thermal neutrons/gamma discrimination: Simulation and results

机译:用于快速/热中子/伽马歧视的纳米粒子加载的塑料闪烁体:模拟和结果

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摘要

We report herein the application of a new series of plastic scintillators loaded with lithium tetraborate nanoparticles (Li2B4O7) designed for the simultaneous detection of fast neutrons, thermal neutrons and gammarays. First, MCNP simulations are performed to highlight the potential benefit of Li2B4O7 loading. Then, a nanoparticle-loaded scintillator is prepared and evaluated towards the detection of a partially thermalized neutron/gamma 252-californium source. Several scenarios of radiation/matter interactions are evaluated against the observed results. A detection chamber composed of boron-containing chipboard wood has been specifically designed and a subtraction method was set up to afford the best discrimination pattern. For the first time, a triple discrimination is presented with a nanoparticles-loaded plastic scintillator, where both Li-6(n, alpha) and B-10(n, alpha) signatures are observed. A Figure of Merit of 1.40 was calculated between fast neutrons and gamma rays around 480 keVee. The Figure of Merit between fast + thermal neutrons and gamma rays is slightly worse as it is 1.16 at 380 keVee.
机译:我们在本文中报告了一种载有锂四硼酸锂纳米颗粒(Li2b4O7)的新系列塑料闪烁体,所述纳米颗粒(Li2b4O7)设计用于同时检测快中子,热中子和γAYS。首先,进行MCNP仿真以突出Li2b4O7负载的潜在益处。然后,制备纳米颗粒加载的闪烁体,并朝向检测到部分热化中子/γ252-加利物源的检测。对观察结果评估了几种辐射/物质相互作用的情况。已经专门设计了由含硼刨花板木材组成的检测室,并设立减法方法,以提供最佳的辨别模式。首次,用纳米颗粒加载的塑料闪烁体提出三重识别,其中Li-6(N,α)和B-10(N,α)签名。在快速中子和伽玛光线左右计算1.40的价值,左右480克维。快速+热中子和伽玛光线之间的优点是略差,因为它在380克维雅为1.16。

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