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Interferometric fiber sensor using exposed core microstructured optical fiber for refractive index based biochemical sensing

机译:使用裸芯微结构光纤的干涉光纤传感器用于基于折射率的生化传感

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We proposed and experimentally demonstrated an in-fiber interferometric-type sensor by splicing an exposed core microstructured optical fiber (ECF) with lead-in and lead-out single mode fibers (SMFs) for refractive index-based biochemical sensing applications. Due to the multimode characteristic of the ECF, several modes can be excited at the lead-in splicing point and, after propagating through the ECF section, arrive at the lead-out splicing point with different phases forming a multi-arm interference pattern in the transmission spectrum of the device. Two dominant modes were found be consistently excited by maximizing the butt coupling between ECF and SMFs. The interference fringes shifts differently upon applying liquids of different refractive index on the exposed side of the ECF.
机译:我们通过在裸露的纤芯微结构光纤(ECF)与基于折射率的生化传感应用中引入和引入单模光纤(SMF)进行拼接,提出并实验证明了光纤内干涉式传感器。由于ECF的多模特性,可以在导入接合点处激发几种模式,并在传播通过ECF部分后,以不同的相位到达导出接合点,从而在通道中形成多臂干涉图样。设备的传输频谱。人们发现,通过最大化ECF和SMF之间的对接耦合,始终可以激发两个主导模式。在ECF的裸露面施加不同折射率的液体时,干涉条纹的移动会有所不同。

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