Opt Express. 2023 Apr 24;31(9):14570-14582. doi: 10.1364/OE.485208.
A compact fiber-optic temperature sensor with hybrid interferometers enhanced by the harmonic Vernier effect was proposed, which realized 36.9 times sensitization of the sensing Fabry-Perot interferometer (FPI). The hybrid interferometers configuration of the sensor consists of a FPI and a Michelson interferometer. The proposed sensor is fabricated by splicing the hole-assisted suspended-core fiber (HASCF) to the multi-mode fiber fused with the single-mode fiber, and filling polydimethylsiloxane (PDMS) into the air hole of HASCF. The high thermal expansion coefficient of PDMS improves the temperature sensitivity of the FPI. The harmonic Vernier effect eliminates the limitation of the free spectral range on the magnification factor by detecting the intersection response of internal envelopes, and realizes the secondary sensitization of the traditional Vernier effect. Combing the characteristics of HASCF, PDMS, and first-order harmonic Vernier effect, the sensor exhibits a high detection sensitivity of -19.22 nm/°C. The proposed sensor provides not only a design scheme for compact fiber-optic sensors, but also a new strategy to enhance the optical Vernier effect.
提出了一种基于谐和 Vernier 效应增强的混合干涉仪的紧凑型光纤温度传感器,实现了传感法布里-珀罗干涉仪(FPI)的 36.9 倍敏化。传感器的混合干涉仪结构由 FPI 和迈克尔逊干涉仪组成。所提出的传感器通过将带有孔的悬芯光纤(HASCF)拼接至与单模光纤熔合的多模光纤,并将聚二甲基硅氧烷(PDMS)填充到 HASCF 的空气孔中来制造。PDMS 的高热膨胀系数提高了 FPI 的温度灵敏度。谐和 Vernier 效应通过检测内部包络的交点响应消除了自由光谱范围对放大倍数的限制,实现了传统 Vernier 效应的二次敏化。结合 HASCF、PDMS 和一阶谐和 Vernier 效应的特点,传感器表现出-19.22nm/°C 的高检测灵敏度。所提出的传感器不仅为紧凑型光纤传感器提供了设计方案,而且为增强光学 Vernier 效应提供了新策略。