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Dose mapping inside a gamma irradiator measured with doped silica fibre dosimetry and Monte Carlo simulation

机译:用掺杂的二氧化硅纤维剂量测定和蒙特卡罗模拟测量的伽马辐射器内部的剂量映射

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摘要

In recent years doped silica fibre thermoluminescent dosimeters (TLD) have been demonstrated to have considerable potential for irradiation applications, benefitting from the available sensitivity, spatial resolution and dynamic dose range, with primary focus being on the needs of medical dosimetry. Present study concerns the dose distribution inside a cylindrically shaped gamma-ray irradiator cavity, with irradiator facilities such as the familiar Co-60 versions being popularly used in industrial applications. Quality assurance of the radiation dose distribution inside the irradiation cell of such a device is of central importance in respect of the delivered dose to the irradiated material. Silica fibre TLD dose-rates obtained within a Gammacell-220 irradiator cavity show the existence of non-negligible dose distribution heterogeneity, by up to 20% and 26% in the radial and axial directions respectively, Monte Carlo simulations and available literature providing some support for present findings. In practice, it is evident that there is need to consider making corrections to nominal dose rates in order to avoid the potential for under-dosing.
机译:近年来,已经证明了掺杂的二氧化硅纤维热敏发光剂量计(TLD)具有相当大的辐照应用潜力,从可用敏感性,空间分辨率和动态剂量范围内有益处,主要重点是医疗剂量测定的需求。本研究涉及圆柱形伽马射线射线腔内的剂量分布,诸如熟悉的CO-60版本,诸如熟悉的CO-60版本普遍存在工业应用中。在这种装置的照射细胞内部的辐射剂量分布的质量保证是对辐照材料的递送剂量的核心重要性。在γ-220辐照器腔内获得的二氧化硅纤维TLD剂量 - 分别显示出不可忽略的剂量分布异质性,分别在径向和轴向方向上的不可忽略剂量分布异质性,蒙特卡罗模拟和提供一些支撑的可用文献对于现在的研究结果。在实践中,很明显需要考虑对标称剂量率进行校正,以避免欠剂量的可能性。

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