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首页> 外文期刊>Journal of Lightwave Technology >Graded-index polymer optical fiber with high temperature and high humidity stability
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Graded-index polymer optical fiber with high temperature and high humidity stability

机译:具有高温高湿稳定性的渐变折射率聚合物光纤

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It was clarified for the first time that the slight attenuation increment observed in the previous poly methyl methacrylate (PMMA)-dopant system graded-index polymer optical fiber (GI POF) we reported originated in the excess scattering loss induced by the aggregation of absorbed water into the POF. Although the PMMA material generally absorbs two weight% of water at maximum, the low attenuation of the conventional step-index (SI) POF whose core material is PMMA can be maintained at 70/spl deg/C, 80% relative humidity (RH) atmosphere because the absorbed water might be homogeneously dispersed without any aggregation in the core of POF. On the other hand, addition of dopant material having higher refractive index than that of PMMA is required to form the refractive index distribution in the GI POF, which decreases the amount of water absorption into polymer, because the dopant material is more hydrophobic than PMMA. Therefore, in spite of the small amount of absorbed water such as 0.5 wt.%, the absorbed water molecules can not be uniformly dispersed but must be aggregated to form heterogeneities in the refractive index of the polymer matrix. It was clarified that a dopant material that is as hydrophilic as PMMA was required to maintain the attenuation of the PMMA-dopant system GI POF under high temperature and high humidity atmosphere, and such a suitable dopant system GI POF was proposed.
机译:首次澄清,我们报道的先前的聚甲基丙烯酸甲酯(PMMA)-掺杂剂系统渐变折射率聚合物光纤(GI POF)中观察到的轻微衰减增量起因于吸收水的聚集所引起的过大散射损耗进入POF。尽管PMMA材料通常最多吸收2%(重量)的水,但其核心材料为PMMA的常规阶跃折射率(SI)POF的低衰减可以保持在70 / spl deg / C,相对湿度(RH)为80%在大气中,因为吸收的水可能均匀分散在POF的芯中而没有任何聚集。另一方面,需要添加具有比PMMA高的折射率的掺杂剂材料以在GI POF中形成折射率分布,这减少了吸收到聚合物中的水的量,因为掺杂剂材料比PMMA更疏水。因此,尽管吸收的水很少,例如0.5重量%,但是吸收的水分子不能均匀地分散,而是必须聚集以形成聚合物基质的折射率中的不均匀性。明确了需要在高温高湿气氛下维持PMMA掺杂体系GI POF衰减的,与PMMA一样亲水的掺杂剂材料,提出了这样的合适的掺杂体系GI POF。

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