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High-temperature effects in fluorine-doped, fused synthetic silica fibers

机译:掺氟熔融合成石英纤维的高温效应

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Effects caused by exposure oflarge-core, fluorine-doped, step-index silica optical fibers to high temperatures were studied experimentally in controlled laboratory conditions. A fiber was located partially inside a temperature-controlled electric tube furnace and irradiated from the end by a light source. The Light source was either an incandescent halogen lamp or a blackbody radiator. The influence of fiber temperature on the angular distribution of the radiation in the fiber and the coupling and propagation of thermal radiation in the fiber was studied. With increasing temperature the profile of the angular distribution of the radiation was transformed irreversibly from a Chinese hat profile to a much flatter one, This effect was pronounced at 1000 degrees C and above. Radiation from the furnace was found to propagate in the fiber as an attenuating mode at temperatures above 800 degrees C. Most of the radiation exited the fiber at angles beyond but close to the acceptance angle. Calculations show that thermal self-radiation of the fiber is negligible. The physical explanations fur these effects are discussed and practical conclusions are drawn. (C) 1997 Optical Society of America.
机译:在受控的实验室条件下,通过实验研究了大芯掺氟,阶跃折射率石英光纤暴露于高温引起的影响。纤维部分位于温度可控的管式炉内,并从末端通过光源照射。光源是白炽灯卤素灯或黑体辐射器。研究了纤维温度对纤维中辐射角分布以及热辐射在纤维中耦合和传播的影响。随着温度的升高,辐射角分布的轮廓不可逆地从中国帽轮廓转变为平坦得多的轮廓。在1000摄氏度及以上的温度下,这种影响尤为明显。发现来自炉子的辐射在温度高于800摄氏度时以衰减模式在光纤中传播。大多数辐射以超过但接近接收角的角度从光纤中出来。计算表明,纤维的热自辐射可忽略不计。讨论了这些效应的物理解释,并得出了实际结论。 (C)1997年美国眼镜学会。

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