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Investigation of the neutron spectrum of americium-beryllium sources by Bonner sphere spectrometry

机译:邦纳球光谱法研究a铍源的中子谱

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Americium-beryllium neutron sources are certainly the most widely used in neutron dosimetry laboratories, basically due to their long half-life and their energy distribution, which covers the energy domain of interest for many applications in ambient and personal dosimetry. Nevertheless, the spectrum of this source depends on the materials and dimension of the capsule and on the amount and physical-chemical properties of the active material, thus affecting relevant quantities such as the spectrum-averaged fluence-to-dose equivalent conversion coefficient A EURAMET (European Association of National Metrology Institutes) project (n. 1104) was initiated to experimentally investigate how the neutron spectrum changes for different source sizes and encapsulations with a view to providing improved data for a planned revision of the ISO 8529 Standard Series. The experimental campaign was carried out in the low scatter facility at NPL. Here three different Bonner sphere spectrometers, BSSs, were exposed to the neutron fields produced by three different neutron sources formats: one X3 capsule (1 Ci) and two X14 capsules (10 Ci and 15 Ci). The specific advantage of the BSS is the large sensitivity to low-energy neutrons (E < 0.1 MeV) which is the component expected to be most affected by the capsule-to-capsule variations and the component which is least well known. This paper summarises the results of the campaign with emphasis on (1) estimating the low-energy component of the Am-Be neutron spectrum, according to the encapsulation type; (2) evaluating the coherence between the Bonner spheres data and the previous studies performed with high-resolution spectrometers but limited in energy to E> 0.1 MeV; (3) understanding whether the ISO-recommended Am-Be spectrum needs to be amended, and for which source formats.
机译:ber铍中子源肯定是中子剂量学实验室中使用最广泛的,主要是由于它们的半衰期长和能量分布,这涵盖了环境和个人剂量学中许多应用的关注能量范围。然而,该来源的光谱取决于胶囊的材料和尺寸以及活性物质的量和物理化学性质,因此会影响相关量,例如光谱平均通量至剂量当量转换系数A EURAMET (欧洲国家计量学会协会)(n。1104)项目的发起是为了实验研究不同源尺寸和封装的中子谱如何变化,以期为ISO 8529标准系列的计划修订提供改进的数据。实验活动是在NPL的低分散设施中进行的。在这里,三种不同的Bonner球谱仪(BSS)暴露于三种不同中子源格式产生的中子场:一个X3胶囊(1 Ci)和两个X14胶囊(10 Ci和15 Ci)。 BSS的特殊优势是对低能中子(E <0.1 MeV)具有很高的灵敏度,这是受胶囊间差异影响最大的成分,并且是众所周知的成分。本文总结了研究的结果,重点是(1)根据封装类型估算Am-Be中子谱的低能成分; (2)评估Bonner球体数据与先前使用高分辨率光谱仪进行的研究之间的相干性,但其能量限于E> 0.1 MeV; (3)了解是否需要修改ISO推荐的Am-Be频谱,以及哪些源格式。

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