Study of a new boron loaded plastic scintillator

S. Normand, B. Mouanda, S. Haan, M. Louvel
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引用次数: 13

Abstract

Neutron detection research using plastic scintillators has recently led to instrument development for several applications and particularly for nuclear material characterization. In particular, plastic scintillators exhibit a fast time response and a high efficiency for fast neutrons spectrometry. The use of boron loaded, plastic scintillators has been also proposed in order to reduce dead time for fission neutron coincidence counting. We report here on fabrication of a new and low cost boron loaded plastic scintillator. Further, a simulation study was performed, including light production and transport in this kind of scintillator. Its characteristics have been measured in terms of light response, photon and neutron induced signals. An experiment has been carried out using the ion beam of a Van de Graaff accelerator at Saclay so as to determine the Birks' parameters of the scintillators. These parameters were obtained for proton (between 1 to 2 MeV) and alpha particles (between 3.35 MeV and 5.4 MeV). The correlation between the experimental data and the simulation predictions has been studied for the neutron response of these scintillators. In addition, the performance of this scintillator are compared with those of commercially available boron loaded plastic scintillator (BC454 from Bicron, Newbury).
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一种新型载硼塑料闪烁体的研究
使用塑料闪烁体的中子探测研究最近导致了几种应用的仪器开发,特别是用于核材料表征。特别是,塑料闪烁体具有快速的时间响应和高效的快中子光谱测定。为了减少裂变中子符合计数的死亡时间,还提出了使用载硼的塑料闪烁体。本文报道了一种新型低成本载硼塑料闪烁体的制备。在此基础上,对该闪烁体的光产生和输运进行了模拟研究。从光响应、光子和中子诱导信号等方面测量了其特性。利用萨克雷Van de Graaff加速器的离子束进行了实验,以确定闪烁体的Birks参数。这些参数适用于质子(1 ~ 2 MeV)和α粒子(3.35 ~ 5.4 MeV)。对这些闪烁体的中子响应进行了实验数据与模拟预测的相关性研究。此外,还将该闪烁体的性能与市售的硼塑料闪烁体(来自Bicron, Newbury的BC454)进行了比较。
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