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Tomographic study of polymer bridges between two optical fibers for telecommunication applications

机译:两种光纤电信应用中聚合物桥梁的断层研究

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In this paper we present the tomographic studies of refractive index distribution in polymer bridges between two optical fibers. Detailed refractive index maps are needed in order to improve the technological process of manufacturing of those bridges and to achieve lower return losses. At first the technological process of bridges fabrication through photopolymerization is presented. The interferometric measurements of reference fibers used to produce those bridges and two series of microbridges are performed in visible (632.8 nm) and infrared (1550 nm) experimental systems. The relations between vis and IR results are determined, which allows for performing tomographic measurements in more accurate conditions secured in visible spectrum. The experimentally obtained refractive index distributions in microbridges are used for modeling the insertion and return losses, which are compared with the real losses obtained for the produced microbridges. This knowledge will be used for better understanding of the manufacturing process and its further optimization.
机译:本文介绍了两种光纤之间的聚合物桥梁折射率分布的断层研究。需要详细的折射率地图,以改善这些桥梁的制造技术过程并实现较低的回报损失。首先,提出了通过光聚合制造的桥梁的技术过程。用于产生那些桥的参考纤维的干涉测量和两种微生物在可见(632.8nm)和红外(1550nm)实验系统中进行。 vis和IR结果之间的关系被确定,其允许在固定在可见光谱中更准确的条件下进行的断层的测量。微生物中的实验获得的折射率分布用于建模插入和返回损耗,与所产生的微生物获得的实际损耗进行比较。这些知识将用于更好地了解制造过程及其进一步优化。

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