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An optic fiber sensor for multiple gases based on fiber loop ring-down spectroscopy and microring resonator arrays 被引量:1

An optic fiber sensor for multiple gases based on fiber loop ring-down spectroscopy and microring resonator arrays
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摘要 A high-sensitivity sensor for multiple gases based on microring array filter and fiber loop ring-down spectroscopy system is proposed and demonstrated. The parameters of the resonators are designed so that the filtered signal from a broadband light source can be tuned with an absorption spectral line of gas. Therefore, through adding microring resonators horizontally and vertically, the number of target gases and filter range are increased. In this research, in the broad spectral range of about 0.9 μm, only the absorption spectral lines of target gases are filtered. The simulation results show that three target gases, CH_4, CO_2 and HF, can be simultaneously detected by the sensing system. Owing to the fiber loop ring-down spectroscopy, the whole system is optimized in mini-size and sensitivity, and we can choose different sensing methods to enhance the measurement accuracy for high and low concentration conditions. A high-sensitivity sensor for multiple gases based on microring array filter and fiber loop ring-down spectroscopy system is proposed and demonstrated. The parameters of the resonators are designed so that the filtered signal from a broadband light source can be tuned with an absorption spectral line of gas. Therefore, through adding microring resonators horizontally and vertically, the number of target gases and filter range are increased. In this research, in the broad spectral range of about 0.9 μm, only the absorption spectral lines of target gases are filtered. The simulation results show that three target gases, CH4, CO2 and HF, can be simultaneously detected by the sensing system. Owing to the fiber loop ring-down spectroscopy, the whole system is optimized in mini-size and sensitivity, and we can choose different sensing methods to enhance the measurement accuracy for high and low concentration conditions.
出处 《Optoelectronics Letters》 EI 2016年第4期312-315,共4页 光电子快报(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.61471210 and 61501271) Happiness Foundation of Wang Kuancheng
关键词 光纤环形腔 光纤传感器 谐振器 气体 微环 阵列 传感系统 高灵敏度 Band structure Carbon dioxide Fibers Gases Light sources Optical resonators Resonators Signal processing Spectroscopy
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