Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7129597 | Optics & Laser Technology | 2018 | 8 Pages |
Abstract
An optical fiber sensor based on the single-mode/no-core/single-mode (SNS) core-offset technology along with a Faraday rotator mirror structure has been proposed and experimentally demonstrated. A transverse optical field distribution of self-imaging has been simulated and experimental parameters have been selected under theoretical guidance. Results of the experiments demonstrate that the temperature sensitivity of the sensor is 0.0551â¯nm/°C for temperatures between 25 and 80â¯Â°C, and the correlation coefficient is 0.99582. The concentration sensitivity of the device for sucrose and glucose solutions was found to be as high as 12.5416 and 6.02248â¯nm/(g/ml), respectively. Curves demonstrating a linear fit between wavelength shift and solution concentration for three different heavy metal solutions have also been derived on the basis of experimental results. The proposed fiber-optic sensor design provides valuable guidance for the measurement of concentration and temperature.
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Engineering
Electrical and Electronic Engineering
Authors
Heng Lu, Xu Wang, Songling Zhang, Fang Wang, Yufang Liu,