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Evaluation of fast-neutron radiation effects in optical fibers for fusion reactor diagnostics

机译:光纤中快中子辐射效应的评估,用于聚变堆诊断

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A simple CCD-camera spectrometer was deployed at the Los Alamos Spallation Radiation Effects Facility to characterize fast neutron irradiation effects in several silica-based optical fibers over the wavelength range /spl sim/450-1100 nn. The experimental arrangement allowed optical loss spectra to be developed from remotely recovered frame grabs at various times during irradiation without necessary resort to "cut back" methods. Data recorded for a pure-silica-core/F-doped-silica-clad fiber displayed a peculiar artifact which is described and mathematically modelled in terms of leaky modes propagating in an optical cladding which is substantially less susceptible to radiation-induced optical attenuation than is the core. Evidence from optical time-domain reflectometry supports the postulate that mode leakage into the cladding may be due to light scattering from the tracks of ions displaced by the 14-MeV neutrons. These results suggest that fibers with fluorine doping in the core, as well as in the cladding, would be relatively resistant to radiation-induced attenuation in the UV-visible spectral region.
机译:一个简单的CCD相机光谱仪部署在Los Alamos的散裂辐射效应设施上,以表征波长范围为/ spl sim / 450-1100 nn的几种二氧化硅基光纤中的快速中子辐照效应。实验安排允许在辐射过程中的各个时间从远程恢复的帧抓取中开发出光损耗光谱,而不必诉诸“削减”方法。对于纯硅纤芯/ F掺杂硅包层光纤记录的数据显示出奇特的伪影,该伪影根据在光学包层中传播的泄漏模式进行描述和数学建模,该模型比受光诱导的光学衰减的影响要小得多是核心。来自光学时域反射仪的证据支持以下假设:模式泄漏到包层中可能是由于14 MeV中子所置换离子的光散射所致。这些结果表明,在纤芯以及包层中均掺杂有氟的光纤将相对抵抗辐射在紫外可见光谱范围内引起的衰减。

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