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首页> 外文期刊>IEEE Transactions on Nuclear Science >High Level Gamma and Neutron Irradiation of Silica Optical Fibers in CEA OSIRIS Nuclear Reactor
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High Level Gamma and Neutron Irradiation of Silica Optical Fibers in CEA OSIRIS Nuclear Reactor

机译:CEA OSIRIS核反应堆中石英光纤的高能γ和中子辐照

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摘要

In the final objective of elaborating an optical sensor of dimensional change in a nuclear testing reactor, we present extreme high level irradiation tests, up to 1.3 1020 nfast/cm2 and 16 GGy, conducted on high purity silica and hollow core photonic bandgap (PBG) fibers. These tests are performed in the OSIRIS reactor at CEA Saclay. We measure continuously radiation induced absorption (RIA), at 3 optical wavelengths: 980 nm, 1064 nm and 1310 nm. The evolution with the time of the spectral dependency over larger wavelength range is also reported. As well as reporting RIA up to higher dose than presented before, we demonstrate here the excellent superiority of hollow core PBG fibers over their conventional counterparts in term of radiation resistance up to over 1020nfast/cm2 and 10 GGy. We also report some optical time domain reflectometry (OTDR) measurements that probe the irradiated parts of the fibers and show a back scattering peak which appears, widens spatially then duplicates. We provide an interpretation based on the change of silica when it turns to metamict phase.
机译:在制造核试验反应堆中尺寸变化的光学传感器的最终目标中,我们提出了在高纯度二氧化硅和中空光子带隙(PBG)上进行的最高水平辐射测试,最高1.3 1020 nfast / cm2和16 GGy纤维。这些测试在CEA Saclay的OSIRIS反应器中进行。我们在980 nm,1064 nm和1310 nm这3个光学波长处连续测量辐射诱导吸收(RIA)。还报道了在更大的波长范围内光谱依赖性随时间的变化。除了报告RIA达到比以前更高的剂量外,我们还展示了中空PBG纤维在高达1020nfast / cm2和10 GGy以上的抗辐射性方面优于传统的PBG纤维。我们还报告了一些光学时域反射仪(OTDR)测量,该测量探测了光纤的辐照部分并显示出出现的反向散射峰,在空间上变宽,然后重复。我们提供了一种基于二氧化硅转变为亚取代相时的变化的解释。

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