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Affordable WDM components: the polymer solution

机译:实惠的WDM组分:聚合物溶液

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An advanced polymeric waveguide technology was developed for affordable WDM components that address the needs of both the Telecom and the Datacom industries. We engineered high- performance organic polymers that can be readily made into both multimode and single-mode optical waveguide structures of controlled numerical aperture and geometry. These materials are formed from highly-crosslinked acrylate monomers with specific linkages that determine properties such as flexibility, toughness, loss, and environmental stability. These monomers are intermiscible, providing for precise adjustment of the refractive index from 1.3 to 1.6. In polymer form, they exhibit state-of-the-art loss values, high thermal stability, high humidity resistance, low dispersion and low birefringence. Waveguides are formed photolithographically, with the liquid monomer mixture polymerizing upon illumination in the UV via either mask exposure or laser direct writing. A wide range of rigid and flexible substrates can be used, including glass, quartz, oxidized silicon, glass-filled epoxy printed circuit board substrate, and flexible polyimide film. Waveguiding structures measuring tens of inches in length can be produced on computer boards, and guides that are meters long can be printed on rolls of plastic. We describe the fabrication of both Bragg gratings and waveguide grating routes in our polymers for filtering and demultiplexing applications in Telecom WDM systems. In Datacom, we describe polymeric components that we produced for aerospace WDM sensor systems. The importance of CAD tools in designing WDM devices is emphasized in this work. We further discuss the low-cost manufacturing of WDM components in an industrial environment.
机译:为实惠的WDM组件开发了先进的聚合物波导技术,这些组件解决了电信和数据传播产业的需求。我们设计了高性能有机聚合物,可以容易地进入多模和单模光波导结构的受控数值孔径和几何形状。这些材料由高度交联的丙烯酸酯单体形成,具有特定的键,可确定性质,例如柔韧性,韧性,损失和环境稳定性。这些单体是可聚的,提供精确调节1.3至1.6的折射率。在聚合物形式中,它们表现出最先进的损失值,高热稳定性,高湿度,低分散和低双折射。通过光刻地形成波导,液体单体混合物通过掩模暴露或激光直接写入在UV中的照射时聚合。可以使用各种刚性和柔性基板,包括玻璃,石英,氧化硅,玻璃填充的环氧印刷电路板基板和柔性聚酰亚胺膜。可以在计算机板上产生长度数十英寸的波导结构,并且可以在塑料卷上印刷米长的导向器。我们描述了在我们的聚合物中制造布拉格光栅和波导光栅途径,用于在电信WDM系统中过滤和解复用应用。在Datacom中,我们描述了我们为航空航天WDM传感器系统生产的聚合物组件。在这项工作中强调了CAD工具在设计WDM设备时的重要性。我们进一步讨论了工业环境中WDM组件的低成本制造。

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