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UV-Laser Modification of Polymers for the Optical Information Technology

机译:用于光学信息技术的聚合物的UV激光改性

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In this article some recent results are presented about the photochemical modification of polymers by UV-laser-irradiation leading to a controllable change of the refractive index in the UV-illuminated region of the polymer surface. The exact modification mechanism and its relation to the modified refractive index have been examined on the basis of PMMA used as an UV-modifiable model polymer with good optical quality. This new UV-laser-assisted technology for photochemical modification of the optical properties of UV-modifiable polymers permits the manufacturing of a wide range of integrated- optical components like strip waveguides, power splitters, (Mach-Zehnder-)interferometers, Bragg gratings and other dispersive structures. These integrated-optical elements are relevant for the realization of complex dispersive components like WDM or AWG, which have a wide application in the optical sensor and information technology. The optical and functional properties like loss rate or mode field distribution of some selected integrated-optical components have been measured and are discussed in this paper.
机译:在本文中,通过UV激光辐射提出了关于聚合物的光化学修饰的一些结果,导致聚合物表面的UV焊接区域中的折射率的可控变化。基于PMMA用作具有良好光学质量的UV可改性模型聚合物,已经检查了确切的修改机制及其与改性折射率的关系。这种新的UV激光辅助技术用于光化学修改的UV可改性聚合物的光学性能允许制造各种集成光学组件,如条带波导,电源分路器,(Mach-Zehnder-)干涉仪,布拉格光栅和其他分散结构。这些集成光学元件与WDM或AWG等复杂分散组件的实现相关,在光学传感器和信息技术中具有广泛的应用。已经测量了一些所选择的集成光学组件的损耗率或模式场分布的光学和功能性质,并在本文中讨论。

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