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Fast bragg grating inscription in PMMA polymer optical fibres:impact of thermal pre-treatment of preforms

机译:PMMA聚合物光纤中的快速布拉格光栅刻印:预成型坯的热处理影响

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摘要

In this work, fibre Bragg gratings (FBGs) were inscribed in two different undoped poly- (methyl methacrylate) (PMMA) polymer optical fibres (POFs) using different types of UV lasers and their inscription times, temperature and strain sensitivities are investigated. The POF Bragg gratings (POFBGs) were inscribed using two UV lasers: a continuous UV HeCd @325 nm laser and a pulsed UV KrF @248 nm laser. Two PMMA POFs are used in which the primary and secondary preforms (during the two-step drawing process) have a different thermal treatment. The PMMA POFs drawn in which the primary or secondary preform is not specifically pre-treated need longer inscription time than the fibres drawn where both preforms have been pre-annealed at 80 °C for 2 weeks. Using both UV lasers, for the latter fibre much less inscription time is needed compared to another homemade POF. The properties of a POF fabricated with both preforms thermally well annealed are different from those in which just one preform step process is thermally treated, with the first POFs being much less sensitive to thermal treatment. The influence of annealing on the strain and temperature sensitivities of the fibres prior to FBG inscription is also discussed, where it is observed that the fibre produced from a two-step drawing process with well-defined pre-annealing of both preforms did not produce any significant difference in sensitivity. The results indicate the impact of preform thermal pre-treatment before the PMMA POFs drawing, which can be an essential characteristic in the view of developing POF sensors technology.
机译:在这项工作中,使用不同类型的UV激光将光纤布拉格光栅(FBG)刻在两种不同的未掺杂聚(甲基丙烯酸甲酯)(PMMA)聚合物光纤(POF)中,并研究了其铭刻时间,温度和应变敏感性。 POF布拉格光栅(POFBGs)使用两个UV激光器进行内切:连续UV HeCd @ 325 nm激光器和脉冲UV KrF @ 248 nm激光器。使用两个PMMA POF,其中主要和次要预成型件(在两步拉伸过程中)具有不同的热处理。与在80°C下将两种预成型坯均进行2周预退火的拉伸纤维相比,未对主预成型坯或次要预成型坯进行特殊拉制的PMMA POF需要更长的铭刻时间。与另一种自制POF相比,使用这两种UV激光器,对于后一种纤维,所需的刻印时间要少得多。用两种经过良好退火的预成型件制造的POF的特性与仅对一个预成型件步骤工艺进行热处理的特性有所不同,而第一批POF对热处理的敏感性要低得多。还讨论了退火对FBG铭刻之前纤维的应变和温度敏感性的影响,在该观察结果中,观察到由两步拉伸过程以及两种预成型件的明确预退火确定的纤维不会产生任何影响。灵敏度差异显着。结果表明在PMMA POF拉制之前进行预成型坯热处理的影响,对于开发POF传感器技术而言,这可能是一个基本特征。

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