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High sensitivity liquid level sensor based on dual side-hole fiber Mach-Zehnder interferometer

机译:基于双侧孔光纤Mach-Zehnder干涉仪的高灵敏度液位传感器

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摘要

A novel highly sensitive liquid-level sensor based on an asymmetric dual side-hole fiber (DSHF) using the core mode as the sensing mode and the cladding mode as the reference mode is described. The side-hole located close to the fiber core is opened by polishing and used to access the core mode as the sensing mode, the side hole located furthest from fiber core being used to tightly confine the cladding mode as the reference mode. The small core size of the DSHF further enhances the sensitivity. Pure-water-level sensitivities of 1.496 nm/mm, 2.026 nm/mm and 4.019 nm/mm are demonstrated experimentally when the distance between the DSHF core and its proximal (opened) side hole are 1.75 mu m, 1.6 mu m and 1.1 mu m, respectively. The sensor also exhibits low-temperature cross-sensitivity of similar to 0.013 mm/degrees C, similar to 0.011 mm/degrees C and similar to 0.006 mm/degrees C. The fabrication process in this case is not sensitive to the polishing process and its uniformity is determined mainly by the quality of the DSHF itself, which makes it possible to ensure repeatable fabrication. Such reliability of fabrication lends itself well to good reproducibility for potential multiple sensor unit manufacture.
机译:描述了一种基于非对称双侧孔光纤(DSHF)的新型高敏感液位传感器,其使用核心模式作为感测模式和包层模式作为参考模式。靠近纤维芯的侧孔通过抛光打开并用于访问核心模式作为传感模式,侧孔距离纤维芯最远的侧孔用于紧密限制包层模式作为参考模式。 DSHF的小核心大小进一步增强了灵敏度。当DSHF核心和近端(打开的)侧孔之间的距离为1.75 mu m,1.6 mu m和1.1 mu时,实验纯净水位敏感性为1.496nm / mm,2.026nm / mm和4.019 nm / mm。 m分别。该传感器还表现出类似于0.013mm /℃的低温交叉敏感性,类似于0.011mm /℃,类似于0.006mm /℃。在这种情况下,制造过程对抛光过程并不敏感均匀性主要由DSHF本身的质量决定,这使得可以确保可重复的制造。这种制造可靠性很好地利用潜在的多个传感器单元制造的良好再现性。

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