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Multiple hollow-core anti-resonant fiber as a supermodal fiber interferometer

机译:多空心抗谐振光纤作为超模态光纤干涉仪

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摘要

Hollow-core anti-resonant fiber technology has made a rapid progress in low loss broadband transmission, enabled by its much reduced light-material overlap. This unique characteristic has driven emerging of new applications spanning from extreme wavelength generation to beam delivery. The successful demonstrations appear to suggest progression of the technology toward device level development and all-fiberized systems. We investigate this opportunity and report an in-fiber interferometer built in a dual hollow-core anti-resonant fiber. By placing multiple air cores in a single fiber, coherently interacting transverse modes are excited, which becomes a basis of an interferometer. We use this hollow core based inherent supermodal interaction to demonstrate highly sensitive in-fiber interferometer. Unique combination of the air guidance and the supermodal interaction offers robust, simple yet highly sensitive interferometer with suppressed temperature cross-talk that has been an enduring problem in fiber strain sensing applications. The in-fiber interferometer is further investigated as a sensing element for pressure measurement based on an interferometric phase change upon external strain. The interferometer features 39.3 nm/MPa of ultrahigh sensitivity with 0.14 KPa/°C of negligible gas pressure temperature crosstalk. The performance, which is much improved from prior fiber sensors, testifies advances of hollow core fiber technology toward a device level.
机译:中空的反谐振光纤技术由于其光材料的重叠大大减少而在低损耗宽带传输中取得了快速进展。这种独特的特性推动了从极端波长生成到光束传输的新应用的出现。成功的演示似乎表明该技术正在向设备级开发和全纤维系统发展。我们调查了这个机会,并报告了一种内置在双空心抗谐振光纤中的光纤干涉仪。通过将多个空芯放置在单根光纤中,可以激发相干相互作用的横向模,这成为干涉仪的基础。我们使用基于空心的固有超模态相互作用来演示高度敏感的光纤干涉仪。空气引导和超模态相互作用的独特组合提供了坚固,简单而又高度灵敏的干涉仪,并具有抑制的温度串扰,这一直是光纤应变传感应用中的一个长期问题。进一步研究了光纤干涉仪作为基于外部应变干涉相变的压力测量传感元件。该干涉仪具有39.3 nm / MPa的超高灵敏度,且气压温度串扰可忽略不计,为0.14 KPa /°C。与以前的光纤传感器相比,性能有了很大提高,这证明了空心光纤技术在设备水平上的进步。

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