JOURNAL ARTICLE

Highly Sensitive Airflow Sensor Based on Fabry–Perot Interferometer and Vernier Effect

Yong ZhaoPeng WangRi-Qing LvXu Liu

Year: 2016 Journal:   Journal of Lightwave Technology Vol: 34 (23)Pages: 5351-5356   Publisher: Institute of Electrical and Electronics Engineers

Abstract

A novel highly sensitive airflow sensor based on Fabry-Perot interferometer (FPI) and Vernier effect is proposed and demonstrated. The sensor is fabricated by splicing a section of hollow-core fiber (HCF) between a lead-in single mode fiber (SMF) and a section of SMF, which is almost one-fifteenth the length of the HCF. Airflow changes the cavity length of the FPI, which leads to the shift of the reflection spectrum. The reflection beam from the last end of the SMF is utilized to generate the Vernier effect, which enlarges the shift of the spectrum for 9.57 times than that of a single FPI. According to the experimental results, when the airflow ranges from 0 to 7 m/s, the spectrum of the sensor shifts as high as 7.9 nm which is almost eight times more than that of the self-heating sensor based on silver-coated FBG. And the highest airflow velocity sensitivity of the sensor can reach 1.541 nm/(m/s) in the region of 3 m/s ~ 7 m/s. Besides, the sensor has a series of advantages such as fast response, low cost, compact size, and reflection measurement.

Keywords:
Airflow Fabry–Pérot interferometer Interferometry Materials science Optics Fusion splicing Sensitivity (control systems) Optical fiber Fiber optic sensor Reflection (computer programming) Optoelectronics Physics Electronic engineering Engineering Wavelength

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Topics

Advanced Fiber Optic Sensors
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Photonic Crystal and Fiber Optics
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Photonic and Optical Devices
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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