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基于微光纤模式干涉仪的水溶液超灵敏光学传感

Ultrasensitive optical sensing in aqueous solution based on microfiber modal interferometer.

作者信息

Wang Jing, Liao Yipeng, Wang Shanshan, Wang Xin

出版信息

Opt Express. 2018 Sep 17;26(19):24843-24853. doi: 10.1364/OE.26.024843.

Abstract

In this paper, an ultrahigh sensitivity sensing in aqueous solution for microfiber modal interferometer (MMI) is realized. The group refractive index (RI) difference between HE and HE mode will come down to 0 at a certain wavelength, resulting in ultrahigh sensitivity near this wavelength. MMI with different diameters have their individual ultrasensitive wavelength band, which indicates the broad range of optional probing wavelength and more liberal diameter condition on fiber fabrication. In the experimentation, infrared absorption band in water around 1360-1600nm is easy to keep away by adjusting the microfiber diameter. As a result, an ultrahigh sensitivity of 14.95 pm/ppm is realized for sodium nitrate at 1320nm, whose equivalent sensitivity is about 1.26 × 10-nm/RIU for RI, which is much higher than most of the existing naked sensors with magnitude of 10-10nm/RIU.

摘要

本文实现了微光纤模式干涉仪(MMI)在水溶液中的超高灵敏度传感。HE 模式和 HE 模式之间的群折射率(RI)差在特定波长下会降至 0,从而在该波长附近实现超高灵敏度。不同直径的 MMI 具有各自的超灵敏波长带,这表明在光纤制造中具有广泛的可选探测波长范围和更宽松的直径条件。在实验中,通过调整微光纤直径,易于避开 1360 - 1600nm 附近水中的红外吸收带。结果,在 1320nm 处对硝酸钠实现了 14.95 pm/ppm 的超高灵敏度,其等效灵敏度对于 RI 约为 1.26×10⁻⁹nm/RIU,远高于大多数现有裸传感器的 10⁻¹⁰nm/RIU 量级。

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