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Tapered-fiber-based refractive index sensor at an air/solution interface

机译:空气/溶液界面的基于锥形纤维的折射率传感器

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摘要

An approach to achieve refractive index sensing at an air and aqueous glycerol solution interface is proposed using a tapered-fiber-based microfiber Mach-Zehnder interferometer (MFMZI). Compared to a surrounding uniform medium of air or solutions, the spectral interference visibility of the MFMZI at the air/solution interface is significantly reduced due to a weak coupling between the fundamental cladding mode and high-order asymmetric cladding modes, which are extremely sensitive to the external refractive index. The MFMZI is experimentally demonstrated as an evanescent wave refractive index sensor to measure concentrations of glycerol solutions by monitoring average power attenuation of the tapered fiber.
机译:提出了一种使用基于锥形纤维的微纤维马赫曾德尔干涉仪(MFMZI)在空气和甘油水溶液界面处实现折射率传感的方法。与周围均匀的空气或溶液均匀介质相比,由于基本包层模式与高阶非对称包层模式之间的耦合较弱,因此MFMZI在空气/溶液界面处的光谱干扰可见性显着降低。外部折射率。 MFMZI在实验上被证明是一种van逝波折射率传感器,可通过监视锥形光纤的平均功率衰减来测量甘油溶液的浓度。

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