• Photonic Sensors
  • Vol. 6, Issue 3, 214 (2016)
Yubin WEI1、2, Jun CHANG1、*, Jie LIAN1, Qiang WANG1, and Wei WEI1
Author Affiliations
  • 1School of Information Science and Engineering and Shandong Provincial Key Laboratory of Laser Technology and Application, Shandong University, Jinan, 250100, China
  • 2Laser Research Institute of Shandong Sciences Academy, Jinan, 250014, China
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    DOI: 10.1007/s13320-016-0320-1 Cite this Article
    Yubin WEI, Jun CHANG, Jie LIAN, Qiang WANG, Wei WEI. Study of a Distributed Feedback Diode Laser Based Hygrometer Combined Herriot-Gas Cell and Waterless Optical Components[J]. Photonic Sensors, 2016, 6(3): 214 Copy Citation Text show less

    Abstract

    A distributed feedback diode laser (DFB-DL) based hygrometer combined with a long-path-length Herriot gas cell and waterless optical components was proposed and investigated. The main function of this sensor was to simultaneously improve the measurement reliability and resolution. A comparison test between a 10-cm normal transmission-type gas cell and a 3-m Herriot gas cell was carried out to demonstrate the improvement. Reliability improvement was achieved by influence suppression of water vapor inside optical components (WVOC) through combined action of the Herriot gas cell and waterless optical components. The influence of WVOC was suppressed from 726 ppmv to 25 ppmv using the Herriot gas cell. Moreover, combined with waterless optical components, the influence of WVOC was further suppressed to no more than 4 ppmv. Resolution improvement from 11.7 ppmv to 0.32 ppmv was achieved mainly due to the application of the long-path-length Herriot gas cell. The results show that the proposed sensor has a good performance and considerable potential application in gas sensing, especially when probed gas possibly permeates into optical components.
    Yubin WEI, Jun CHANG, Jie LIAN, Qiang WANG, Wei WEI. Study of a Distributed Feedback Diode Laser Based Hygrometer Combined Herriot-Gas Cell and Waterless Optical Components[J]. Photonic Sensors, 2016, 6(3): 214
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