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Fiber in-line interferometer based on air-cavity with suspended fiber-core for sensing

机译:基于气腔的光纤在线干涉仪,用于感测悬浮纤维芯

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摘要

We demonstrate a new type of fiber in-line Mach-Zehnder interferometer (MZI). The device is fabricated by firstly inscribing a ring structure surrounding the fiber core at the ends of two single-mode fibers using a femtosecond laser micromachining technique and then fusion-splicing the two fibers with end structures. Due to the high temperature produced in the fusion splicing process, the ring structure expands rapidly and results in an inner air-cavity with a suspended fiber-core. The incident light traveling in the fiber core is split into two parts at the edge of the inner air-cavity, one propagating through the air cavity while the other remains traveling along the suspended fiber core; both are collected by the fiber core at the air-cavity end, thus forming an in-line MZI. The device has good high-temperature sustainability up to 900 degrees C. Moreover, by drilling a hole on top of the air-cavity, an open micro-channel can be created for air pressure measurement with a pressure sensitivity of similar to-8214.68 pm MPa-1.
机译:我们展示了一种新型纤维在线马赫 - Zehnder干涉仪(MZI)。通过使用飞秒激光微机械技术首先刻在两个单模纤维的末端围绕纤维芯的环形结构来制造该装置,然后用FemtoSecond激光微加工技术,然后用端部结构熔化两个纤维。由于在熔接过程中产生的高温,环结构迅速扩展并导致具有悬浮纤维芯的内部气腔。在纤维芯中行进的入射光被分成内部空腔边缘的两个部分,一个通过空气腔传播,而另一个沿着悬浮纤维芯行进;两者都由空气腔端的纤维芯收集,从而形成在线式MZI。该装置具有良好的高温可持续性,高达900℃。此外,通过钻孔在空腔的顶部,可以为空气压力测量产生开放的微通道,其压力灵敏度与-8214.68 pm相似MPA-1。

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