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Multimode interference structures as sensing elements integrated into Mach-Zehnder interferometers in polymer foils

机译:多模干涉结构作为在聚合物箔中集成到Mach-Zehnder干涉仪中的感测元件

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Integrated Mach-Zehnder interferometers (MZIs) based on flexible polymer materials have been demonstrated as evanescent field sensors for the detection of refractive indices and molecule concentrations. The used application of a measurement window in classical MZIs is difficult in a roll-to-roll fabrication process. We have previously demonstrated foil-based asymmetric MZIs with different widths in sensing and reference arm which do not need a measurement window. Here we present the use of a multimode interference structure (MMI) inserted into the sensing arm of the interferometer to increase the sensitivity. We consider the expected interference signal from numerical simulations and optimize the system in terms of sensitivity, dimensions and absorption losses. The fabricated MMI-MZI foils are tested experimentally to demonstrate the function of the MMI-MZI system by applying water/glucose solutions with different refractive indices.
机译:基于柔性聚合物材料的集成Mach-Zehnder干涉仪(MZIS)已被证明是用于检测折射率和分子浓度的渐逝场传感器。在轧制到卷制造过程中难以在经典MZIS中使用测量窗口的使用。我们之前已经展示了基于箔的不对称MZIS,具有不同宽度的感测和参考臂,其不需要测量窗口。这里我们介绍了插入干涉仪的传感臂的多模干干结构(MMI)以增加灵敏度。我们考虑来自数值模拟的预期干扰信号,并在灵敏度,尺寸和吸收损失方面优化系统。通过用不同的折射率施加水/葡萄糖溶液来实验测试制造的MMI-MZI箔以证明MMI-MZI系统的功能。

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