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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Neutron spectrometry of a lightly encapsulated ~(241)Americium-beryllium neutron source using two different Bonner Sphere Spectrometers
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Neutron spectrometry of a lightly encapsulated ~(241)Americium-beryllium neutron source using two different Bonner Sphere Spectrometers

机译:使用两个不同的棕色球体光谱仪轻轻封装的〜(241)amerium-beryllium源的中子光谱法

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摘要

(241)Americium-beryllium neutron sources are used in a variety of applications, spanning from the civil engineering to the oil industry, and to the radiation dosimetry. The ISO 8529-1 Standard reports a reference distribution for the energy of the emitted neutrons, which extends from 0.1 to 11 MeV. Nevertheless every source exhibits a slightly different spectrum, depending on the material and dimension of the capsule, and on the amount of active material. This source-to-source variability is expected to mainly affect the energy region below 0.1 MeV. As these differences can be important in the fields of neutron dosimetry and metrology, some relevant source formats have been investigated with spectrometric methods. The neutron calibration laboratory of the Politecnico di Milano recently acquired a CZ/1003/S - 96 type (241) Am-Be source (nominal emission rate 2.2E+6 s(-1)). As this type of source is in use in a number of European laboratories, its spectrum was determined through a neutron spectrometry experiment, involving two Bonner sphere spectrometers with well-known responses. The experimental spectrum is compared to that published for a similar source and to the ISO-recommended one.
机译:(241)Americ-Beryllium中子源用于各种应用,从土木工程跨越石油工业,以及辐射剂量测定。 ISO 8529-1标准报告了发射中子能量的参考分布,其延伸为0.1至11 meV。然而,每个来源都表现出略微不同的光谱,这取决于胶囊的材料和尺寸,以及活性材料的量。预计该源极具变异性主要影响0.1 meV的能源区域。由于这些差异在中子剂量测定和计量领域中可能是重要的,因此已经通过光谱方法研究了一些相关的源格式。 PoliteCnico Di Milano的中子校准实验室最近获得了CZ / 1003 / s-96型(241)am-be源(标称排放率2.2e + 6 s(-1))。由于这种类型的来源在许多欧洲实验室中使用,因此通过中子光谱实验确定其频谱,涉及具有众所周知的反应的两个邦特球谱仪。将实验频谱与类似源和ISO推荐的谱进行比较。

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