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Specific Features of Fiber Optics Application in ITER

机译:光纤应用中的特定特征

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Silica-based optical fibers have high transmission in the visible range and are widely used for transmitting light from plasma to detectors in modern fusion devices. Pure silica-core/F-doped silica-clad fibers are mainly applied for plasma diagnostics. The possible problems that can be encountered with fiber optics in ITER diagnostics are discussed. The neutron fluence to be accumulated in the bundles during the ITER lifetime is estimated. The results of the irradiation tests of the optical fibers at the fission reactor and the 14 MeV neutron generator are used for analysis of radiation resistance of the optical fibers. The results of radiation tests and neutron calculations prove the requirement to apply silica fibers with high radiation resistance in ITER. It is recommended to place the fiber bundles in the port cell behind the biological shielding, where the neutron flux from the plasma is attenuated to a value of similar to 10(7) n/(cm(2) s). The conclusion is made that it is possible to use the modern optical fibers in the plasma optical diagnostics (in a spectral range of 450-700 nm), the optical fibers being capable of surviving the radiation load during the whole ITER lifetime.
机译:基于二氧化硅的光纤在可见范围内具有高透射率,并且广泛用于从等离子体向现代融合装置中的探测器传输光。纯二氧化硅芯/ F掺杂的二氧化硅层纤维主要用于等离子体诊断。讨论了在ITER诊断中使用光纤可以遇到的可能问题。估计在灌注器期间在捆绑中积聚的中子流量。裂变反应器和14MeV中子发生器处的光纤的照射试验结果用于分析光纤的辐射电阻。辐射试验和中子计算的结果证明了在迭代中施加具有高辐射抗性的二氧化硅纤维的要求。建议将纤维束放置在生物屏蔽后面的端口单元中,其中来自等离子体的中子通量衰减至类似于10(7)℃/(2)S)的值。结论是可以使用等离子体光学诊断中的现代光纤(在450-700nm的光谱范围内),光纤能够在整个磨练期间存活辐射负荷。

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