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首页> 外文期刊>IEEE sensors journal >Fabrication and Characterization of Single-Step Optical Microfiber Mach–Zehnder Interferometer Refractive Index Sensors
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Fabrication and Characterization of Single-Step Optical Microfiber Mach–Zehnder Interferometer Refractive Index Sensors

机译:单步光学马赫-曾德尔干涉仪折射率传感器的制造与表征

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摘要

In this paper, exploiting a new single-step process, in-line Mach-Zehnder interferometers (M-MZIs) on microfibers of different diameters are fabricated and their refractive-index (RI) sensitivities and temperature stabilities are characterized. The M-MZI comprises a microfiber with two functionalizing miniature down-tapers inscribed along its longitudinal direction. It is fabricated exploiting a selectively modulated arc-discharge assisted fiber heating and pulling one-step process. In this new technique, inserted short time off-switches in the heating arc signal, while the fiber ends are pulled, induce additional micro-tapers on the thinned fiber is being fabricated. The resultant one-step M-MZIs show extremely high interference visibilities up to similar to 34 dB and high RI sensitivities up to 2271.3 nm/RI-unit around RI = 1.368. The results show that, with reducing the diameter of the structures, in addition to the higher RI sensitivity, very low temperature coefficient (similar to 5.2 pm/degrees C for 8 mu m sample) will he achieved. These M-MZIs have high stability, flexibility, reproducibility, and low fabrication cost.
机译:在本文中,利用新的单步过程,制造了不同直径微纤维上的在线Mach-Zehnder干涉仪(M-MZIs),并表征了它们的折射率(RI)敏感性和温度稳定性。 M-MZI包括一个超细纤维,该纤维具有沿其纵向内切的两个功能化的小型缩锥。它是利用选择性调制的电弧放电辅助纤维加热和拉制一步法制造的。在这种新技术中,在拉紧光纤末端的同时,在加热电弧信号中插入短时关断开关,会在细化的光纤上制造出额外的微型锥。所得的一步式M-MZI在RI = 1.368附近显示出极高的干扰可见度,最高可达34 dB,而RI灵敏度最高,可达2271.3 nm / RI-unit。结果表明,在减小结构直径的同时,除了具有更高的RI灵敏度外,还将实现非常低的温度系数(类似于8微米样品的5.2 pm /℃)。这些M-MZI具有高稳定性,灵活性,可重复性和低制造成本。

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