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Accurate refractive index profiling in a graded-index plastic optical fiber exceeding gigabit transmission rates

机译:折射率超过千兆传输速率的渐变折射率塑料光纤中的准确折射率分布图

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摘要

An optimum index profile offering the highest bit rate communication was formed in a poly methyl methacrylate (PMMA)-based graded-index plastic optical fiber (GI-POF) by modifying the polymerization process. The interfacial-gel polymerization process we have proposed to fabricate the PMMA-based GI-POF is capable of forming a nearly optimum refractive index profile. However, the theoretically calculated bandwidth from the measured index profile was reduced compared with a GI-POF with an optimum profile. In this paper, we report how to obtain a PMMA-based GI-POF having exactly the optimum index profile. The bandwidth of this ideal GI-POF was experimentally measured and a very high value of 2.88 GHz, even for a 150-m fiber length, was confirmed. The calculated bandwidth agreed well with the experimentally measured one. These results indicate that very low modal dispersion can be expected in a GI-POF fabricated by the modified interfacial-gel polymerization process.
机译:通过修改聚合过程,在基于聚甲基丙烯酸甲酯(PMMA)的渐变折射率塑料光纤(GI-POF)中形成了提供最高比特率通信的最佳折射率分布。我们提出的用于制造基于PMMA的GI-POF的界面凝胶聚合工艺能够形成近乎最佳的折射率分布。但是,与具有最佳配置文件的GI-POF相比,从测得的索引配置文件计算得出的理论带宽有所减少。在本文中,我们报告了如何获得具有最佳折射率分布的基于PMMA的GI-POF。通过实验测量了此理想GI-POF的带宽,即使对于150 m的光纤长度,也可以确认到2.88 GHz的极高值。计算出的带宽与实验测量的带宽非常吻合。这些结果表明,在通过改进的界面凝胶聚合工艺制造的GI-POF中,可以预期到非常低的模态分散。

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