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Radiation-Induced Attenuation of Perfluorinated Polymer Optical Fibers for Radiation Monitoring

机译:用于辐射监测的全氟化聚合物光纤的辐射诱导衰减

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Due to some of their unique properties, optical fiber dosimeters are attractive and extensively researched devices in several radiation-related areas. This work evaluates the performance and potential of commercial perfluorinated polymer optical fibers (PF-POFs) for radiation monitoring applications. Gamma radiation-induced attenuation (RIA) of two commercial PF-POFs is evaluated in the VIS spectral region. Influence of a dose rate and temperature on RIA measurement is investigated, along with defect stability and measurement repeatability. Co-extruded PF-POFs are identified as more suitable for radiation monitoring applications due to lower dose-rate dependence. With co-extruded PF-POF, RIA measurement holds potential for highly-sensitive radiation monitoring with good reproducibility. The results show that operation in the blue part of the spectrum provides most favorable performance in terms of the largest nominal radiation sensitivity, lower temperature, and dose-rate dependence as well as higher defect stability. We demonstrate for the first time to our knowledge, that PF-POFs can be used for distributed detection of radiation with doses down to tens of Grays. The off-the-shelf, user-friendly PF-POF could be of interest as a cheap, disposable sensor for various applications, especially of a more qualitative nature.
机译:由于它们的某些独特性能,光纤剂量计是有吸引力的,并且在与辐射有关的几个领域中进行了广泛的研究。这项工作评估了用于辐射监测应用的商用全氟化聚合物光纤(PF-POF)的性能和潜力。在VIS光谱范围内评估了两种商用PF-POF的伽马辐射诱导衰减(RIA)。研究了剂量率和温度对RIA测量的影响,以及缺陷稳定性和测量可重复性。由于较低的剂量率依赖性,共挤出的PF-POF被确定为更适合辐射监测应用。使用共挤出的PF-POF,RIA测量具有进行高灵敏度辐射监测和重现性的潜力。结果表明,就最大的标称辐射灵敏度,较低的温度和剂量率依赖性以及较高的缺陷稳定性而言,在光谱的蓝色部分中操作提供了最有利的性能。我们首次证明,PF-POF可用于剂量低至数十个格雷的辐射的分布式检测。现成的,用户友好的PF-POF作为一种便宜的,一次性的传感器,可能会引起人们的兴趣,这些传感器可用于各种应用,尤其是具有定性的性质。

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