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Germania and alumina dopant diffusion and viscous flow effects at preparation of doped optical fibers

机译:锗和氧化铝掺杂剂在掺杂光纤制备中的扩散和粘滞流动效应

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摘要

We report on germania and alumina dopant profile shift effects at preparation of compact optical fibers using packaging methods (Stack-and-Draw method, Rod-in-Tube (RiT) technique). The sintering of package hollow volume by viscous flow results in a shift of the core-pitch ratio in all-solid microstructured fibers. The ratio is increased by about 5% in the case of a hexagonal package. The shift by diffusion effects of both dopants is simulated for typical slow speed drawing parameters. Thermodynamic approximations of surface dissociation of germania doped silica suggest the need of an adequate undoped silica barrier layer to prevent an undesired bubble formation at fiber drawing. In contrast, alumina doping does not estimate critical dissociation effects with vaporous aluminium oxide components. We report guide values of diffusion length of germania and alumina for the drawing process by kinetic approximation. The germania diffusion involves a small core enlargement, typically in the sub-micrometer scale. Though, the alumina diffusion enlarges it by a few micrometers. A drawn pure alumina preform core rod transforms to an amorphous aluminosilicate core with a molar alumina concentration of only about 50% and a non-gaussian concentration profile.
机译:我们在报告中介绍了使用包装方法(叠放法,管内棒状(RiT)技术)制备紧凑型光纤时锗和氧化铝掺杂剂轮廓偏移的影响。粘性流动对包装中空体积的烧结导致全固态微结构纤维中芯距比的变化。在六角形包装的情况下,该比例增加了约5%。针对典型的慢速拉制参数,模拟了两种掺杂剂的扩散效应偏移。掺锗的二氧化硅的表面解离的热力学近似表明,需要有足够的未掺杂的二氧化硅阻挡层,以防止在纤维拉伸时形成不希望的气泡。相反,氧化铝掺杂不能估计与气态氧化铝组分的临界离解作用。我们通过动力学逼近报告了拉制过程中锗和氧化铝的扩散长度的指导值。锗的扩散涉及较小的核心扩大,通常在亚微米级别。虽然,氧化铝扩散将其扩大了几微米。拉制的纯氧化铝预成型坯芯棒转变为无定形的铝硅酸盐芯,其氧化铝的摩尔浓度仅为约50%,且非高斯浓度分布。

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