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Effects of gamma radiation on perfluorinated polymer optical fibers

机译:γ射线对全氟化聚合物光纤的影响

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The paper presents the first complex study of gamma radiation effects on a low-loss perfluorinated polymer optical fiber (PF-POF) based on Cytop (R) polymer. Influence of gamma radiation on fiber's optical, mechanical and climatic performance is investigated. The radiation-induced attenuation (RIA) in the visible and near-infrared region (0.4 mu m-1.7 mu m) is measured and its origins are discussed. Besides attenuation increase, radiation is also shown to decrease the thermal degradation stability of the fiber and to increase its susceptibility to water. With regard to complex fiber transmission performance upon irradiation, the optimal operation wavelength region of PF-POF-based systems intended for use in radiation environments is determined to be around 1.1 mu m. On the other hand, the investigated fiber holds potential for low-cost RIA-based optical fiber dosimetry applications with sensitivity as high as 260 dBm(-1)/kGy in the visible region. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍了对基于Cytop(R)聚合物的低损耗全氟化聚合物光纤(PF-POF)进行伽玛辐射影响的第一项复杂研究。研究了伽马辐射对光纤的光学,机械和气候性能的影响。测量了可见光和近红外区(0.4μm-1.7μm)中的辐射诱发衰减(RIA),并讨论了其起源。除衰减增加外,还显示出辐射会降低纤维的热降解稳定性并增加其对水的敏感性。关于辐射时的复杂光纤传输性能,用于辐射环境的基于PF-POF的系统的最佳工作波长范围确定为1.1微米左右。另一方面,所研究的光纤具有低成本,基于RIA的光纤剂量学应用的潜力,在可见光区域的灵敏度高达260 dBm(-1)/ kGy。 (C)2016 Elsevier B.V.保留所有权利。

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