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In-fiber modal interferometer formed by offset-splicing in air-core photonic bandgap fiber

机译:在空芯光子带隙光纤中偏移拼接形成的光纤模态干涉仪

摘要

We present a compact in fiber Mach-Zehnder interferometer (MZI) formed by an offset splicing technique in air-core photonic bandgap fiber (PBF). The MZI is implemented by using two cascaded offset-splicing joints which act as beam splitter and combiner. The influences of lateral offset amount and interferometer length on the performance of MZIs were investigated experimentally. Several in-fiber MZIs with different interferometer lengths were built and it is found that the interference dip wavelength spacing is inversely proportional to the interferometer length. The MZI relies on the interference occurring between the fundamental core mode (FCM) and a surface mode (SM) of the PBF. The potential applications of the proposed in-fiber MZl were further investigated as temperature and strain sensors. The temperature and longitudinal strain sensitivities of the MZl were measured to be 211.89 pm/( degrees C m) and 0.6 pm/mu epsilon. respectively.
机译:我们提出了一种紧凑的光纤马赫曾德尔干涉仪(MZI),它是通过在空芯光子带隙光纤(PBF)中采用偏移拼接技术形成的。 MZI是通过使用两个级联的偏置-分接接头来实现的,它们分别用作分束器和合束器。实验研究了横向偏移量和干涉仪长度对MZIs性能的影响。建立了几种具有不同干涉仪长度的光纤内MZI,发现干涉浸入波长间隔与干涉仪长度成反比。 MZI依赖于PBF的基本核心模式(FCM)和表面模式(SM)之间发生的干扰。拟议中的光纤MZ1作为温度和应变传感器的潜在应用得到了进一步研究。测得的MZ1的温度和纵向应变敏感性为211.89 pm /(摄氏度)和0.6 pm / muε。分别。

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