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Super-high-strength metal-coated low-hydroxyl low-chlorine all-silica optical fibers

机译:超高强度金属涂覆的低羟基低氯气 - 二氧化硅光纤

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High-purity KS-4V synthetic silica developed in the Silicate Chemistry Institute of the Russian Academy of Sciences is tested as the core material for radiation hardened optical fibers. Pure-silica-core fluorine-doped-silica-cladding optical fibers with polymer (acrylate) or metal (aluminum) coating are produced as the experimental samples. The light-reflecting fluorine-doped silica cladding is synthesized by the plasma outside deposition process. The aluminum coating technology used provides a very high strength of the fibers, unattainable for polymer coatings, and expands the fiber operating range up to 400/spl deg/C. It is established that the metal coating application can result in the annealing of the drawing-induced color centers with an absorption peak at 630 nm. Post-/spl gamma/-irradiation loss spectra in KS-4V-based fibers measured in 1-2 hours after 2 MGy irradiation at a dose rate of 8.3 Gy/s in the spectral range 350-700 nm are discussed. The 630 nm absorption peak is practically absent from the post-irradiation loss spectra of aluminum-coated KS-4V-based fibers.
机译:在俄罗斯科学院的硅酸盐化学研究所开发的高纯度KS-4V合成二氧化硅测试作为用于辐射硬化光纤芯材料。纯二氧化硅纤芯掺氟二氧化硅包层用的聚合物(丙烯酸酯)或金属(铝)涂层光纤被制成实验样品。光反射掺氟的二氧化硅包层通过等离子体外部沉积方法合成。所用的铝涂层技术提供的纤维,无法实现对聚合物涂层的一个非常高的强度,并且扩大了光纤的工作范围高达400 / SPL度/ C。已经确定,金属涂层的应用可导致与在630nm处的吸收峰的冲压致色心的退火。后/ SPL伽马/ -irradiation损失在基于KS 4V-纤维在8.3戈瑞的剂量率在1-2小时内测量的2 MGY照射后的光谱S IN的光谱范围350-700纳米讨论/。在630nm的吸收峰是由铝涂布的KS-4V-纤维的照射后损失光谱实际上不存在。

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