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Integration of polymer optical waveguides by using flexographic and aerosol jet printing

机译:通过柔版印刷和气溶胶喷射印刷集成聚合物光波导

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As a tribute to the continuously increasing volume of data traffic, optical waveguides have become a serious alternative to electrical circuitries. The potential of precise spaceresolved strain measurements or the capacity to transmit very large amounts of data are two examples of the beneficial use of optical systems. Apart from the general advantages of the optical signal line, like high electromagnetic compatibility, usage in explosive atmosphere or the reduced weight compared to copper cables, modern technologies make use of the possibilities to integrate optical waveguides into structural components. The printing of polymer optical waveguides is part of the current research in functional printing technology. Optimizing the transmission quality and the resolution are key objectives to establish integrated optical data transmission in industry. The manufacturing of multimode waveguides presented in this work is accomplished by a combination of two printing processes. Before producing the optical waveguide itself, using Aerosol Jet Printing, pre-conditioned areas with either hydrophobic or hydrophilic behavior are generated on flexible substrates with an adapted flexographic printing mechanism. This two-stage process allows for the fabrication of step index waveguides featuring parabolic cross sections with minimum widths down to 10 μm and aspect ratios of about 0.3. Conditioning the substrate, which itself forms the bottom cladding, provides a low surface roughness of the optical core. This paper shows the latest results of printing polymer optical waveguides, focusing on actual challenges and optical transmission quality.
机译:作为对不断增长的数据业务量的贡献,光波导已成为电路的一种重要替代方案。精确的空间分辨应变测量的潜力或传输大量数据的能力是光学系统有益应用的两个例子。除了光信号线的一般优势,例如高电磁兼容性,在爆炸性环境中使用或与铜电缆相比重量更轻之外,现代技术还利用了将光波导集成到结构部件中的可能性。聚合物光波导的印刷是功能印刷技术当前研究的一部分。优化传输质量和分辨率是建立行业集成光学数据传输的主要目标。这项工作中提出的多模波导的制造是通过结合两种印刷工艺来完成的。在生产光波导本身之前,使用气溶胶喷射印刷技术,采用适应性苯胺印刷机制,可在柔性基板上产生具有疏水或亲水特性的预处理区域。该两阶段过程允许制造具有抛物线形横截面的阶梯折射率波导,其最小宽度低至10μm,纵横比约为0.3。调节本身形成底部包层的基板可提供较低的光芯表面粗糙度。本文展示了印刷聚合物光波导的最新结果,重点关注实际挑战和光传输质量。

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