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Latest Development of POF: The Tripartite Approach

机译:POF的最新发展:三方方法

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Polymer optical fibers (POF) and microstructured POF are the most promising solution for the "last 100 m" in data communication and different types of sensors, respectively. However the further development of new types POFs demands the tripartite approach, which consists of development of new manufacturing techniques of preforms, novel fiber drawing equipment and new applications of POF.Heating with the conventional electric resistance furnace in POF drawing accompanies inevitable large temperature gradient along the radial direction in the preform. In order to overcome this problem was developed a novel furnace with both: infrared (IR) and convectional heating. Infrared heating was performed with 1.2 μ wavelength IR heating units. Owing to it possible to use bigger diameter preforms and increase drawing speed.New types of multi step-index preforms were manufactured for development work. Unit consisting of lathe with rotating tube was used for preform manufacture. When UV activation was observed insufficient, heat initiated radical polymerization was applied with high efficiency and control over the reaction. Finally the preforms were finalized with polymerizing core of preform under elevated temperature and pressure, Resulting preforms no need to collapse. Intensive research and development of POF include both standard index-guiding fibers as well as microstructured POF for lasers, amplifiers, nonlinear signal processing and biophotonics applications. Such tripartite approach will lead to the further expansion of area of effective application of POF. Authors certify that the work described in our abstract is original and has not been previously presented or published, or planned to be published or presented prior to the IWCS symposium.
机译:聚合物光纤(POF)和微结构化POF分别是数据通信和不同类型传感器中“最后100 m”的最有希望的解决方案。然而,新型POF的进一步发展需要采用三方方法,其中包括开发新的瓶坯制造技术,新颖的纤维拉伸设备以及POF的新应用。在POF拉伸中使用常规电阻炉加热不可避免地会导致温度梯度升高瓶胚的径向。为了克服这个问题,开发了一种同时具有红外和对流加热功能的新型熔炉。用1.2μ波长IR加热单元进行红外加热。由于可以使用更大直径的瓶坯并提高了拉丝速度。新型的多步索引瓶坯被开发用于开发工作。使用由带有旋转管的车床组成的单元进行瓶坯制造。当观察到紫外线活化不足时,以高效率施加热引发的自由基聚合并控制反应。最后,在升高的温度和压力下,用预成型件的聚合芯完成预成型件的成型,从而使预成型件无需塌陷。 POF的深入研究和开发包括用于激光,放大器,非线性信号处理和生物光子学应用的标准折射率导引纤维以及微结构化POF。这种三方方法将进一步扩大POF有效应用领域。作者证明我们摘要中描述的作品是原创作品,以前未曾在IWCS专题讨论会之前发表过或发表过,或计划过发表过。

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