首页> 外文期刊>Sensors Journal, IEEE >Sensitivity Pattern of Femtosecond Laser Micromachined and Plasma-Processed In-Fiber Mach-Zehnder Interferometers, as Applied to Small-Scale Refractive Index Sensing
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Sensitivity Pattern of Femtosecond Laser Micromachined and Plasma-Processed In-Fiber Mach-Zehnder Interferometers, as Applied to Small-Scale Refractive Index Sensing

机译:飞秒激光微加工和等离子处理的光纤马赫曾德尔干涉仪的灵敏度模式,用于小规模折射率传感

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摘要

A highly sensitive refractive index (RI) sensor based on an in-fiber Mach–Zehnder interferometer is discussed. The sensor is fabricated by femtosecond laser in a single-mode fiber. A cylindrical cavity is micromachined in the fiber cladding and partly in the fiber core, forming an interferometric structure. We have found that when the spectral response of the structure to RI is considered, a periodic pattern is observed and the sensitivity highly increases with RI and reaches over 23 000 nm/RIU within the RI range of 1.4200—1.4400 RIU. Moreover, during the measurement of cavities with diameters in the order of tens of micrometers, we found the cavity-filling process to be both difficult and time-consuming, especially when high-RI liquids are being investigated. We therefore applied reactive ion etching in oxygen plasma, which significantly changed the wettability of the cavity’s surface and enabled fast cavity filling with any investigated liquid. Due to its ultra-high sensitivity and capability for investigating sub-nanoliter volumes of liquids, the sensor could be well suited for chemical and bio-sensing applications.
机译:讨论了基于光纤马赫曾德尔干涉仪的高灵敏度折射率(RI)传感器。该传感器由飞秒激光在单模光纤中制成。圆柱形腔在光纤包层中微加工,部分在光纤纤芯中微加工,形成干涉结构。我们发现,当考虑结构对RI的光谱响应时,观察到周期性模式,灵敏度随RI高度增加,并在1.4200-1.4400 RIU的RI范围内达到超过23000 nm / RIU。此外,在测量直径约为数十微米的腔体时,我们发现腔体填充过程既困难又费时,特别是在研究高RI液体时。因此,我们在氧等离子体中进行了反应性离子蚀刻,从而显着改变了型腔表面的可湿性,并能够用任何研究过的液体快速填充型腔。由于其超高的灵敏度和研究亚纳升以下液体量的能力,该传感器非常适合化学和生物传感应用。

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