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Erbium-Doped Fiber Design for Improved Splicing Performance

机译:掺b光纤设计提高了熔接性能

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Fusion splicing is a well-known technique to connect a fiber pair and fusion splicers have been commercially available for this process for a long time. An important feature of a fusion splice is the coupling loss that is influenced by - among other things - the mutual spotsizes of the two fibers involved. Hence, similar fibers such as standard single mode fibers can be spliced to nearly zero loss whereas dissimilar fiber pairs may give higher loss. The latter category covers the splice combinations of erbium doped fibers that are often spliced to other fiber types such as the standard single mode fiber. We have investigated how splice loss of dissimilar fibers is influenced by fiber design with emphasis on this combination. Finally we propose a fiber design suitable for optimizing splicing capabilities of erbium doped fibers. With this design it is possible to keep fiber cutoff below 980 nm, which is of importance for practical applications, a requirement that usually conflicts with the demand for good splicing properties. An actual design, has been manufactured and splicing properties for this and the conventional design are compared.
机译:熔接是连接光纤对的一种众所周知的技术,并且熔接机已经很长时间在商业上可用于该工艺。熔接的一个重要特征是耦合损耗,该损耗受到(其中包括)所涉及的两个光纤的相互斑点的影响。因此,可以将类似的光纤(例如标准单模光纤)拼接为几乎零损耗,而不同的光纤对可能会产生更高的损耗。后一类包括掺often光纤的熔接组合,这些掺混光纤通常会熔接至其他光纤类型,例如标准单模光纤。我们研究了光纤设计如何影响异种光纤的熔接损耗,重点是这种组合。最后,我们提出了一种光纤设计,该设计适合于优化掺sp光纤的拼接能力。通过这种设计,可以将光纤截止保持在980 nm以下,这对于实际应用很重要,这一要求通常与对良好拼接性能的需求相抵触。已经制造出实际的设计,并且将其与常规设计的拼接特性进行了比较。

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