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Manufacturing of embedded multimode waveguides by reactive lamination of cyclic olefin polymer and polymethylmethacrylate

机译:通过环烯烃聚合物和聚甲基丙烯酸甲酯的反应层压制造嵌入式多模波导

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摘要

We demonstrate the manufacturing of embedded multimode optical waveguides through linking of polymethylmethacrylate (PMMA) foils and cyclic olefin polymer (COP) filaments based on a lamination process. Since the two polymeric materials cannot be fused together through interdiffusion of polymer chains, we utilize a reactive lamination agent based on PMMA copolymers containing photoreactive 2-acryloyloxyanthraquinone units, which allows the creation of monolithic PMMA-COP substrates through C-H insertion reactions across the interface between the two materials. We elucidate the lamination process and evaluate the chemical link between filament and foils by carrying out extraction tests with a custom-built tensile testing machine. We also show attenuation measurements of the manufactured waveguides for different manufacturing parameters. The lamination process is in particular suited for large-scale and low-cost fabrication of board-level devices with optical waveguides or other micro-optical structures, e.g., optofluidic devices. © 2016 Society of Photo-Optical Instrumentation Engineers (SPIE).
机译:我们演示了通过基于层压工艺的聚甲基丙烯酸甲酯(PMMA)箔和环烯烃聚合物(COP)细丝的连接制造嵌入式多模光波导。由于两种聚合物材料不能通过聚合物链的相互扩散而融合在一起,因此我们使用了一种基于PMMA共聚物的反应性层压剂,该共聚物包含光反应性2-丙烯酰氧基蒽醌单元,这允许通过CH插入反应跨越两个分子之间的界面生成整体PMMA-COP底物两种材料。我们通过使用定制的拉伸试验机进行萃取试验,阐明了层压过程并评估了长丝和箔之间的化学联系。我们还显示了针对不同制造参数的制造波导的衰减测量。层压工艺特别适合于大规模和低成本地制造具有光波导或其他微光学结构的板级器件,例如光流体器件。 ©2016光电仪器工程师协会(SPIE)。

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