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Intrinsic loss of optical fibers

机译:光纤的固有损耗

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Rayleigh scattering is a dominant factor in terms of optical fiber loss. We investigated the dopant concentration and fictive temperature dependence of Rayleigh scattering in silica-based optical fibers and their glass preforms fabricated by the vapor-phase axial deposition (VAD) technique. The lowest Rayleigh scattering coefficient, which was obtained for a P_2O_5-doped silica preform, was about 80% of the pure silica value. In contrast, the Rayleigh scattering coefficients of F-doped and GeO_2-doped and pure silica glass preforms increased by 5-10% when they were heated to 1800℃ because the density fluctuation is proportional to their fictive temperature. We also obtained very low Rayleigh scattering coefficients in fabricated fibers by controlling the preform composition or the fiber drawing conditions. We used these results to reevaluate the intrinsic losses of P_2O_5 -doped, pure, and GeO_2-doped silica core fibers and found them to be 0.095-0.130 dB/km at 1.55 μm by using the Rayleigh scattering coefficients of their preforms.
机译:就光纤损耗而言,瑞利散射是一个主要因素。我们研究了通过气相轴向沉积(VAD)技术制造的石英基光纤及其玻璃预成型坯中瑞利散射的掺杂浓度和假想温度依赖性。对于掺杂有P_2O-5的二氧化硅预成型坯,最低的瑞利散射系数约为纯二氧化硅值的80%。相比之下,当F掺杂和GeO_2掺杂以及纯石英玻璃预制品加热到1800℃时,其瑞利散射系数增加了5-10%,这是因为密度波动与它们的假想温度成正比。通过控制预成型坯的成分或拉丝条件,我们还获得了人造纤维中非常低的瑞利散射系数。我们使用这些结果重新评估了P_2O_5掺杂的,纯的和GeO_2掺杂的二氧化硅芯纤维的固有损耗,并通过使用它们的预成型件的瑞利散射系数发现它们在1.55μm处为0.095-0.130 dB / km。

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