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Functionalization of UV-curing adhesives for surface-integrated micro-polymer optical fibers

机译:用于表面集成微聚合物光纤的紫外线固化胶的功能化

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摘要

Polymer optical waveguides, especially single-mode waveguides are increasingly used for short distance communication, as well as for sensing applications. The realization of a working communication route requires different and sequentially realized steps. Generally, these steps are the packaging of semiconductor beam senders and receivers, the fabrication of an optical waveguide, the preparation of its end-facets, the alignment of different elements along their optical axis and the integration into a desired communication route. The development of a process, which integrates all these steps for planar surfaces, offers a reduction in time and an increase in flexibility. A sub-step toward such a highly automated system is the integration of optical waveguides into the planar surface. In this context, we are investigating the use of the micro-dispensing process to realize this integration step. We functionalize UV-curing adhesives as cladding for micro-optical cores as well as for inherent bonding to the substrate surface. For this purpose an optical characterization of the adhesives is necessary for an adequate core and cladding material combination. A ow behavior characterization is also relevant in order to analyze the used dispensing process with the selected adhesive. Finally, a mechanical characterization is done to test the adhesion of the core to the adhesive, as well as the adhesive to the substrate surface. In this paper we present a summary of the realized characterization of the selected polymer. Based on experiment results we infer limits and opportunities of this method. © 2016 SPIE.
机译:聚合物光波导,尤其是单模波导越来越多地用于短距离通信以及传感应用。工作通信路径的实现需要不同且顺序实现的步骤。通常,这些步骤是半导体束发送器和接收器的包装,光波导的制造,其端面的制备,不同元件沿其光轴的对齐以及集成到所需的通信路径中。集成了所有这些平面步骤的工艺的发展,可以减少时间并提高灵活性。迈向这种高度自动化系统的子步骤是将光波导集成到平面中。在这种情况下,我们正在研究使用微分配过程来实现这一集成步骤。我们将紫外线固化胶粘剂功能化为微光学纤芯的包覆层以及与基材表面的固有粘结。为此目的,粘合剂的光学特性对于适当的芯和包层材料组合是必需的。流动特性表征也很重要,以便分析使用所选粘合剂的分配过程。最后,进行机械表征以测试芯对粘合剂的粘合力以及粘合剂对基材表面的粘合力。在本文中,我们概述了所选聚合物的已实现表征。根据实验结果,我们推断出该方法的局限性和机会。 ©2016 SPIE。

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