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Technology for polymer-based integrated optical interferometric sensors fabricated by hot-embossing and printing

机译:通过热压印和印刷制造基于聚合物的集成光学干涉传感器的技术

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Integrated optical Mach-Zehnder interferometers (MZI) may be used as high-sensitivity sensors by taking advantage of the interaction of the waveguide evanescent field with liquids or gases surrounding the sensor. We present here the design and simulation of polymer-based MZIs fabricated using printing technologies. Based on simulations of an integrated MZI system with regard to variations of waveguide cross-section and refractive indices of core and cladding to optimize high sensitivity to external refractive index changes of analytes, waveguides with single mode behavior are fabricated by hot-embossing and ink-jet or flexographic printing technologies. Finally, a hybrid combination of a laser diode with the printed MZI will be shown.
机译:集成的光学马赫曾德尔干涉仪(MZI)可通过利用波导渐逝场与传感器周围的液体或气体的相互作用来用作高灵敏度传感器。我们在这里介绍使用印刷技术制造的基于聚合物的MZI的设计和仿真。基于集成MZI系统的仿真,该仿真涉及波导横截面的变化以及纤芯和包层的折射率变化,以优化对分析物的外部折射率变化的高灵敏度,并通过热压印和油墨制备来制造具有单模行为的波导。喷射或柔版印刷技术。最后,将显示激光二极管与印刷的MZI的混合组合。

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