Implementation of energy reduced 90Sr/90Y radiation fields, or: Propagation of beta radiation, a case study

R. Behrens
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Abstract

Reference beta-particle radiation fields are well described in the standard series ISO 6980 issued by the International Organization for Standardization (ISO). In its 2022/2023 edition, two new radiation fields are defined consisting of a radioactive 90Sr/90Y source and a 3 mm or 4 mm plastic absorber located 4 cm in front of the source — with the reference plane of the radiation field being located 20 cm from the source. In this work, the detailed method of how to implement and use these new radiation fields using a Beta Secondary Standard, BSS 2, is described. Furthermore, the influence of the position and thickness of the plastic absorber on the radiation field, i.e., on its spectral and angular distribution as well as on the dose rate, was investigated. It turned out that a change of position by one centimeter or a thickness change of a tenth of a millimeter result in significant changes of the dose rate (∼ 7 % to ∼ 10 %). Finally, the dependence of the angular and spectral distribution on the position and thickness of the absorber was investigated in detail.
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实施能量减少的 90Sr/90Y 辐射场,或:贝塔辐射传播,案例研究
国际标准化组织(ISO)发布的 ISO 6980 系列标准对参考β粒子辐射场进行了详细描述。在其 2022/2023 年版中,定义了两个新的辐射场,包括一个放射性 90Sr/90Y 源和一个位于源前方 4 厘米处的 3 毫米或 4 毫米塑料吸收器--辐射场的参考平面位于距源 20 厘米处。在这项工作中,详细介绍了如何使用 Beta 二次标准 BSS 2 来实现和使用这些新辐射场的方法。此外,还研究了塑料吸收器的位置和厚度对辐射场的影响,即对其光谱和角度分布以及剂量率的影响。结果表明,位置改变一厘米或厚度改变十分之一毫米都会导致剂量率发生显著变化(从 7% 到 10%)。最后,详细研究了角度和光谱分布与吸收器位置和厚度的关系。
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