Affiliation:
1. University of Macau
2. Macau University of Science and Technology
3. Hong Kong Polytechnic University
4. Peng Cheng Laboratory
5. Shenzhen Institute of Information Technology
6. China Jiliang University
Abstract
We propose a Vernier effect-based sensor for temperature and salinity measurements. This sensor utilizes the correlation speckle pattern generated by spatial multimode interference and has undergone testing to validate its effectiveness. The speckle demodulation method is used to solve the problem of inconsistent envelope measurement when tracking with different upper and lower envelopes. The device consists of two Fabry Perot interferometers (FPIs) created by connecting hole core fiber (HCF) and erbium-doped fiber (EDF) in series. The speckle image produced by the interferometers is analyzed using the Zero means normalized cross-correlation (ZNCC) technique. The ZNCC value demonstrates a linear relationship with salinity and temperature, allowing for the measurement of these parameters. The sensor exhibits a temperature detection sensitivity of −0.0224 /°C and a salinity detection sensitivity of −0.0439/%. The sensor offers several advantageous features, including its compact size, low-cost manufacturing, high sensitivity, stability, and convenient reflection measurements. These characteristics make it a valuable tool for various applications. The proposed Vernier effect-based temperature and salinity sensor shows great potential for simultaneous monitoring and measurement of temperature and salinity in environments such as marine settings or industrial processes where accurate control of these parameters is crucial.
Funder
Department of Natural Resources of Guangdong Province
Science, Technology and Innovation Commission of Shenzhen Municipality
Intelligent Laser Basic Research Laboratory
Natural Science Foundation of Zhejiang Province
Subject
Atomic and Molecular Physics, and Optics
Cited by
2 articles.
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