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基于空心石英管和锥形结构的与温度无关的超灵敏折射率传感器。

Temperature-independent ultra-sensitive refractive index sensor based on hollow-core silica tubes and tapers.

作者信息

Wu Shun, Cheng Haihao, Ma Jianwen, Yang Xuemei, Wang Shun, Lu Peixiang

出版信息

Opt Express. 2021 Mar 29;29(7):10939-10948. doi: 10.1364/OE.422701.

Abstract

We demonstrate a simple and ultra-sensitive refractive index (RI) sensor using a hollow-core silica tube (HCST) sandwiched between an up-taper and a down-taper in single mode fibers (SMF). According to our theoretical analysis, the interference spectrum comes from a combination of a three-beam multi-mode interference and anti-resonance effects. RI sensing will affect the mode interference. By demodulating the fringe contrast of the interference spectra, an ultrahigh sensitivity of -120.18 dB/RIU is achieved, implying a RI resolution of ∼ 8×10 in the RI range from 1.35 to 1.43. What's more, the sensor has great temperature insensitivity of -0.0085 dB/°C, indicating an extremely low cross sensitivity of 7×10 RIU/°C, which further benefits its practical application. The proposed configuration does not require special fiber or fabrication technique. In addition, the sensor's other merits such as simple and compact structure and ease offabrication offer the potential in biochemical sensing applications.

摘要

我们展示了一种简单且超灵敏的折射率(RI)传感器,该传感器使用夹在单模光纤(SMF)中的上锥形和下锥形之间的空心石英管(HCST)。根据我们的理论分析,干涉光谱来自三光束多模干涉和反共振效应的组合。RI传感会影响模式干涉。通过解调干涉光谱的条纹对比度,实现了-120.18 dB/RIU的超高灵敏度,这意味着在1.35至1.43的RI范围内RI分辨率约为8×10。此外,该传感器具有-0.0085 dB/°C的极低温度敏感性,表明其交叉灵敏度极低,为7×10 RIU/°C,这进一步有利于其实际应用。所提出的结构不需要特殊的光纤或制造技术。此外,该传感器的其他优点,如结构简单紧凑、易于制造,在生化传感应用中具有潜力。

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