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Wide-range temperature dependence of Brillouin shift in a dispersion-shifted fiber and its annealing effect

机译:色散位移纤维中布里渊位移的大范围温度依赖性及其退火效应

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摘要

Temperature dependence of the Brillouin shift in a commercially available dispersion-shifted fiber has been experimentally investigated in the range of 20 to 820/spl deg/C. When the as-fabricated fiber underwent a temperature cycle in the entire temperature rage, the Brillouin shift exhibited a noticeable hysteresis having the maximum frequency discrepancy of 48 MHz or larger between heating and cooling processes. After the fiber was annealed for 9 h at 850/spl deg/C, however, the hysteresis almost disappeared and, among repeated temperature cycles in the ranges of 20-820/spl deg/C and of 500-800/spl deg/C, the maximum frequency discrepancy was reduced to /spl plusmn/12.5 MHz or less. It is thus demonstrated that a suitably annealed fiber is reliable for the Brillouin shift-based distributed sensing over the wide temperature range.
机译:在市场上可买到的色散位移光纤中,布里渊位移的温度依赖性已在20至820 / spl℃/℃的范围内进行了实验研究。当制成的光纤在整个温度范围内经历一个温度循环时,布里渊位移表现出明显的磁滞现象,在加热和冷却过程之间的最大频率差异为48 MHz或更大。但是,在850 / spl deg / C的温度下将纤维退火9小时后,磁滞几乎消失了,并且在20-820 / spl deg / C和500-800 / spl deg / C的重复温度循环中,最大频率差异减少到/ spl plusmn / 12.5 MHz或更小。因此证明,在宽温度范围内,经过适当退火的光纤对于基于布里渊位移的分布式传感是可靠的。

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